Friday, 8 February 2013

Immune systems of healthy adults 'remember' germs to which they've never been exposed

Feb. 7, 2013 ? It's established dogma that the immune system develops a "memory" of a microbial pathogen, with a correspondingly enhanced readiness to combat that microbe, only upon exposure to it -- or to its components though a vaccine. But a discovery by Stanford University School of Medicine researchers casts doubt on that dogma.

In a path-breaking study published online Feb. 7 in Immunity, the investigators found that over the course of our lives, CD4 cells -- key players circulating in blood and lymph whose ability to kick-start the immune response to viral, bacterial, protozoan and fungal pathogens can spell the difference between life and death -- somehow acquire memory of microbes that have never entered our bodies.

Several implications flow from this discovery, said the study's senior author, Mark Davis, PhD, professor of microbiology and immunology and director of Stanford's Institute for Immunity, Transplantation and Infection. In the study, newborns' blood showed no signs of this enhanced memory, which could explain why young children are so much more vulnerable to infectious diseases than adults. Moreover, the findings suggest a possible reason why vaccination against a single pathogen, measles, appears to have reduced overall mortality among African children more than can be attributed to the drop in measles deaths alone. And researchers may have to rethink the relevance of experiments conducted in squeaky-clean facilities on mice that have never been exposed to a single germ in their lives.

"It may even provide an evolutionary clue about why kids eat dirt," said Davis. "The pre-existing immune memory of dangerous pathogens our immune systems have never seen before might stem from our constant exposure to ubiquitous, mostly harmless micro-organisms in soil and food and on our skin, our doorknobs, our telephones and our iPod earbuds."

CD4 cells are members of the immune club known as T cells. CD4 cells hang out in our circulatory system, on the lookout for micro-organisms that have found their way into the blood or lymph tissue.

In order to be able to recognize and then coordinate a response to a particular pathogen without inciting a Midas-touch overreaction to anything a CD4 cell bumps into (including our own tissues), our bodies have to host immensely diverse inventories of CD4 cells, each with its own narrow capacity to recognize one single pathogenic "body part" or, to be more scientific, epitope -- and, it's been believed, only that epitope. Contact with that epitope can cause a CD4 to whirr into action, replicating rapidly and performing the immunological equivalent of posting bulletins, passing out bullets and bellowing attack orders through a bullhorn to other immune cells. This hyperactivity is vital to the immune response. (It is CD4 cells that are targeted and ultimately destroyed by HIV, the virus responsible for AIDS.)

In the early 1980s, Davis, now the Burt and Marion Avery Family Professor of Immunology at Stanford, unraveled the mystery of how organisms such as ourselves, equipped with only 20,000 or so genes, can possibly generate the billions of differing epitope-targeting capabilities represented in aggregate by T cells. He found that highly reshufflable "hot spots" in a rapidly dividing T cell's DNA trigger massive mix-and-match madness among these genetic components during cell division, so each resulting T cell sports its own unique variant of a crucial surface receptor and, therefore, is geared to recognizing a different epitope.

That variation accounts for our ability to mount an immune response to all kinds of microbial invaders, whether familiar or previously unseen. But it doesn't account for the phenomenon of immune memory. CD4 cells, like other T cells, can be divided into two groups: so-called "na?ve" CD4s randomly targeting epitopes belonging to pathogens they haven't encountered yet; and CD4s that, having had an earlier run-in with one or another bug, have never forgotten it. These latter CD4 cells are exceptionally long-lived and ultra-responsive to any new encounter with the same pathogen.

"When a na?ve CD4 cell comes across its target pathogen, it takes days or even weeks before the immune system is full mobilized against that pathogen. But an activated-memory CD4 cell can cause the immune system to mount a full-blown response within hours," said William Petri, MD, PhD, chief of infectious diseases and international health at the University of Virginia.

That's why Petri, who was not involved in the study, thinks the newfound abundance in healthy adults, and total absence in newborns, of memory CD4 cells targeting microbes those individuals have never encountered before is so important. For the past 20 years, he has led a team conducting medical interventions in an urban slum in Dacca, the capital of Bangladesh. There, the average infant experiences a half-dozen diarrhea-inducing infections and as many upper-respiratory-tract infections within the first year of life, many of them within the first few months. The consequence, Petri said, is rampant malnutrition, with corresponding cognitive deficits and high mortality -- this, despite the fact that Petri's group provides free health-care and education services and visits homes twice a week.

"If I had lived in such a slum as a kid, I probably would have died of infection," Petri said.

A sophisticated technique invented by Davis in 1996 and since refined in his and others' laboratories permitted the Stanford team to identify a single CD4 cell targeting a particular epitope out of millions. Using this method, his team exposed immune-cell-rich blood drawn from 26 healthy adults, as well as from two newborns' umbilical cords, to various epitopes from different viral strains. They were able to fish out, from among hundreds of millions of CD4 cells per sample, those responsive to each viral epitope.

Nearly all of the 26 adult blood samples contained cells responsive to HIV; to HSV, the virus that causes herpes; and to cytomegalovirus, a common infectious agent that often produces no symptoms but can be dangerous to immune-compromised people. This wasn't surprising, given humans' exhaustive inventories of divergent CD4-cell affinities.

What was surprising was that, on average, about half of the virus-responsive CD4 cells in each adult sample bore unmistakable signs of being in the "memory" state: a characteristic cell-surface marker, gene activation patterns typical of memory T cells, and rapid secretion of signature biochemical signals, called cytokines, that communicate with other immune cells -- even though highly sensitive clinical tests showed that these individuals had never been exposed to any of these viruses in real life.

The newborns' blood contained similar frequencies of CD4 cells responsive to the same three viruses. However, all these cells were in the "na?ve" rather than memory state. "This could explain, at least in part, why infants are so incredibly susceptible to disease," said the study's first author, Laura Su, MD, PhD, an instructor in immunology and rheumatology.

Another surprise: About one-fifth of the adult samples boasted "cross-reactive" memory CD4 cells responsive to other harmless environmental microbes. For example, CD4 cells selected specifically for their reactivity to HIV turned out to be able to recognize a large number of common environmental microbes, including three gut-colonizing bacteria, a soil-dwelling bacterial species and a species of ocean algae. Considering that the investigators tested only a negligible fraction of all the microbes a person might encounter, it's a sure bet that this measure of CD4-cell cross-reactivity was an underestimate.

Next, the researchers recruited two adults who hadn't been vaccinated for flu in five years or longer, and then vaccinated them. In these volunteers, memory CD4s proliferated and otherwise became activated in response to exposure to certain components of the influenza virus, but also to epitopes of several different bacterial and protozoan microbes.

This cross-reactivity could explain why exposure to common bugs in the dirt and in our homes renders us less susceptible to dangerous infectious agents.

Which raises another point. "We grow and use experimental lab mice in totally artificial, ultra-clean environments," Davis said. "That's nothing like the environment that we live in. The CD4 cells from adult mice in the lab environment are almost entirely in the na?ve state. They may be more representative of newborns than of adults."

Petri described the new study as paradigm-shifting. "It was one of those rare, seminal findings that changes the way I think about the immune response," he said.

Davis' study offers hope that some of the immunity conferred by a vaccine extends beyond the specific microbe it targets, Petri said. "This adds support to the impetus to vaccinate infants in the developing world," he said. As many as 30 different pathogens can cause diarrhea, so vaccinating small children against all of them -- even if those vaccines existed -- would require so many separate injections as to be logistically hopeless. Understanding the mechanism by which cross-reactivity occurs might further allow immunologists to develop "wide-spectrum vaccines" that cover a number of infectious organisms.

Share this story on Facebook, Twitter, and Google:

Other social bookmarking and sharing tools:


Story Source:

The above story is reprinted from materials provided by Stanford University Medical Center. The original article was written by Bruce Goldman.

Note: Materials may be edited for content and length. For further information, please contact the source cited above.


Journal Reference:

  1. Laura?F. Su, Brian?A. Kidd, Arnold Han, Jonathan?J. Kotzin, Mark?M. Davis. Virus-Specific CD4 Memory-Phenotype T Cells Are Abundant in Unexposed Adults. Immunity, 2013; DOI: 10.1016/j.immuni.2012.10.021

Note: If no author is given, the source is cited instead.

Disclaimer: This article is not intended to provide medical advice, diagnosis or treatment. Views expressed here do not necessarily reflect those of ScienceDaily or its staff.

Source: http://feeds.sciencedaily.com/~r/sciencedaily/top_news/top_health/~3/cUUdfOFGgpM/130207131602.htm

super tuesday states shepard fairey is snooki pregnant snooki pregnant gbc hedy lamarr jack white

Senate chairman: Hagel nomination on track

FILE - In this Jan. 31, 2013, file photo Republican Chuck Hagel, a former two-term GOP senator from Nebraska and President Obama's choice for Defense Secretary, testifies before the Senate Armed Services Committee during his confirmation hearing on Capitol Hill in Washington. A Senate panel on Wednesday, Feb. 6, 2013, abruptly postponed a vote on Chuck Hagel's nomination to be defense secretary amid Republican demands for more information from President Barack Obama's nominee about his paid speeches and business dealings (AP Photo/J. Scott Applewhite, File)

FILE - In this Jan. 31, 2013, file photo Republican Chuck Hagel, a former two-term GOP senator from Nebraska and President Obama's choice for Defense Secretary, testifies before the Senate Armed Services Committee during his confirmation hearing on Capitol Hill in Washington. A Senate panel on Wednesday, Feb. 6, 2013, abruptly postponed a vote on Chuck Hagel's nomination to be defense secretary amid Republican demands for more information from President Barack Obama's nominee about his paid speeches and business dealings (AP Photo/J. Scott Applewhite, File)

(AP) ? Chuck Hagel's nomination to be the next defense secretary remains on track despite Republican demands for additional information about his paid speeches and business dealings, the Democratic chairman of the Senate Armed Services Committee said Thursday.

The GOP requests dealt a setback to President Barack Obama's pick, forcing the committee to announce late Wednesday it would postpone a vote on the nomination. A new date has not been set.

Sen. Carl Levin, D-Mich., chairman of the committee, said the additional requests were extraordinary and that Hagel had complied with the panel. He said he would move ahead with a vote as soon as possible.

"We can't not vote because there's dissatisfaction. That would be endless," Levin told reporters. "We're going to schedule a vote."

Levin said he was confident the Senate would confirm Hagel, pointing out that none of the Senate's 55 Democrats oppose the nominee, that two Republicans have announced their support and that several other GOP senators have said they would not back a filibuster.

"His confirmation is very much on track to me," Levin said.

The White House said Thursday that Hagel has given lawmakers exhaustive information but will continue to disclose more to the Senate panel considering his nomination.

White House spokesman Jay Carney said Hagel has turned over all available speech transcripts but that some of his speeches were never transcribed. He said it's vital that the Pentagon position be filled and urged the Senate to approve Hagel quickly.

Republicans had complained in a letter that Hagel didn't sufficiently answer questions, including details on all compensation of more than $5,000 that he had received over the past five years. They also pressed him on his recent speeches, which groups he has addressed and on donors to those groups.

"The committee, and the American people, have a right to know if a nominee for secretary of defense has received compensation, directly or indirectly, from foreign sources," Senate Republicans wrote. "Until the committee receives full and complete answers, it cannot in good faith determine whether you should be confirmed as secretary of defense."

Hagel insisted in a letter that he had been forthright with the panel and said the financial information being sought was legally controlled by certain entities and not his to disclose.

"He's been asked what no prior candidates have been asked for, way beyond what the rules of the committee are," Levin complained. The chairman said he would respond with his own letter to the panel's Republicans.

One of the committee's Republicans, Nebraska Sen. Deb Fischer, said Thursday she will vote against Hagel.

Fisher, writing an op-ed published in the Omaha World-Herald, cast Hagel's views as out of the mainstream, a point she argued during his confirmation hearing last week. She also said Hagel gave "confusing and contradictory" testimony before the Armed Services Committee.

Fischer's opposition was widely expected, as Hagel endorsed her Democratic rival ? former Sen. Bob Kerrey ? in the November election. Hagel is a former two-term GOP senator from Nebraska.

Nebraska's other Republican senator, Mike Johanns, has said he supports Hagel for the job. Hagel also has the backing of Sen. Thad Cochran, Miss.

Associated Press

Source: http://hosted2.ap.org/APDEFAULT/89ae8247abe8493fae24405546e9a1aa/Article_2013-02-07-US-Hagel/id-942946a8c9904a839e92abe8d245a51f

etta james ufc on fox evans vs davis fast times at ridgemont high fast times at ridgemont high soylent green phil davis

Accused witch burned alive in Papua New Guinea

PORT MORESBY, Papua New Guinea (AP) ? A mob stripped, tortured and bound a woman accused of witchcraft, then burned her alive in front of hundreds of witnesses in a Papua New Guinea town, police said Friday after one of the highest profile sorcery-related murders in this South Pacific island nation.

Hundreds of bystanders, including many children, watched and some took photographs of Wednesday's brutal slaying. Grisly pictures were published on the front pages of the country's biggest circulating newspapers, The National and Post-Courier, while the prime minister, police and diplomats condemned the killing.

In rural Papua New Guinea, witchcraft is often blamed for unexplained misfortunes. Sorcery has traditionally been countered by sorcery, but retaliations have become increasingly violent in recent years.

The death was the first sorcery-related murder in Papua New Guinea in a year, national police spokesman Dominic Kakas said.

Kepari Leniata, a 20-year-old mother, had been accused of sorcery by relatives of a 6-year-old boy who died in the hospital the day before.

She was tortured with a hot iron rod, bound, doused in gasoline, then set alight on a pile of car tires and trash in the Western Highlands provincial capital of Mount Hagen, Kakas said.

Deputy Police Commissioner Simon Kauba on Friday blasted Mount Hagen investigators by phone for failing to make a single arrest, Kakas said.

The public were apparently not cooperating with police and police carrying out the investigation were not working hard enough, Kakas said.

"He was very, very disappointed that there's been no arrest made as yet," Kakas said.

"The incident happened in broad daylight in front of hundreds of eyewitnesses and yet we haven't picked up any suspects yet. He was very, very curious about that and he blasted the investigators on the phone," Kakas added.

Kakas described the victim's husband as the "prime suspect" and said the man fled the province. Kakas said he did not know if there were a relationship between the husband and the dead boy's family.

He said more than 50 men and people are suspected to have "laid a hand on the victim" and committed crimes in the mob attack. While many children had witnessed the murder, there were no child suspects, he said.

Police Commissioner Tom Kulunga described the murder as "shocking and devilish."

"We are in the 21st century and this is totally unacceptable," Commissioner Kulunga said in a statement.

He suggested courts be established to deal with sorcery allegations, as an alternative to villagers dispensing justice.

Prime Minister Pete O'Neill said he had instructed police to use all available manpower to bring the killers to justice.

"It is reprehensible that women, the old and the weak in our society should be targeted for alleged sorcery or wrongs that they actually have nothing to do with," O'Neill said.

The U.S. Embassy in the national capital Port Moresby issued a statement calling for a sustained international partnership to enhance anti-gender-based violence laws throughout the Pacific.

The embassy of Australia, Papua New Guinea's colonial ruler until independence in 1975 and now its biggest foreign aid donor, said "We join ... all reasonable Papua New Guineans in looking forward to the perpetrators being brought to justice."

Source: http://news.yahoo.com/accused-witch-burned-alive-papua-guinea-012307648.html

kelly clarkson super bowl 2012 ok go peyton manning super bowl nsx chad ochocinco roman numerals superbowl halftime

Thursday, 7 February 2013

Raspberry Pi $25 camera hardware finalized, won't be available for 'at least a month'

Raspberry Pi $25 camera hardware finalized, won't be available for 'at least a month'

The budget board makers over at the Raspberry Pi Foundation are clearly having a busy week, first launching the Model A in Europe, and now reporting that development of the camera add-on for the miniature computers has been completed. Well, the hardware has been finalized, at least, although it hasn't been "tuned" quite yet (picture quality still needs improvement), and the drivers aren't fully ready. The camera PCB measures around 25 x 20 x 9mm, and hosts a 5-megapixel, fixed-focus sensor that can shoot 2592 x 1944 stills and 1080p video at 30 fps. Aligning with the low cost of the main boards, it'll set you back $25, but won't be available for "at least a month." Don't just sit there twiddling your thumbs, though. Start brainstorming all the cool projects you can work on once you put an eye on that Pi.

Filed under: , , ,

Comments

Via: Wired

Source: Raspberry Pi

Source: http://feeds.engadget.com/~r/weblogsinc/engadget/~3/EkRDX3QCHSQ/

abc news msnbc meteor shower 121212 Concert Columbine shooting News Ryan Lanza Facebook

Wednesday, 6 February 2013

Plants cut the mustard for basic discoveries in metabolism

Plants cut the mustard for basic discoveries in metabolism [ Back to EurekAlert! ] Public release date: 5-Feb-2013
[ | E-mail | Share Share ]

Contact: Andy Hoang
AHoang@salk.edu
619-861-5811
Salk Institute

A tiny weed reveals an unexpected chemical connection between hormone pathways

LA JOLLA, CA----You might think you have nothing in common with mustard except hotdogs. Yet based on research in a plant from the mustard family, Salk scientists have discovered a possible explanation for how organisms, including humans, directly regulate chemical reactions that quickly adjust the growth of organs. These findings overturn conventional views of how different body parts coordinate their growth, shedding light on the development of more productive plants and new therapies for metabolic diseases.

Metabolism refers to all the chemical reactions in the body that drive the basic processes of life: birth, growth, reproduction, digestion, sensing and so on. These reactions are orchestrated and quickened by molecular machines called enzymes. Until now, it was believed that each metabolic function required an entirely separate enzyme pathway. Further complicating the picture, scientists focused almost exclusively on genes switching on and off as the means by which each step in the pathway was regulated, roughly analogous to waiting for a part to be ordered then manufactured before the engine can run.

In a paper in this week's Nature Chemical Biology, Salk scientists and Howard Hughes Medical Institute Investigators Joanne Chory and Joseph P. Noel and their colleagues show that metabolic steps can be much more streamlined and linked. Unexpectedly, two separate pathways originally thought to be controlled solely by gene switches can have enzyme canals between them, allowing them to quickly share abundant building blocks for two separate chemical messages known as hormones. These hormones are manufactured in one part of the body in response to changes in environment and quickly alter growth in other parts. Many times, at least two hormones are needed to quickly adjust growth of different tissues in response to a single event.

"Genes are the instruction manuals for how cells build specific enzymes in a pathway, but if you have to wait for many enzymes to be made at the appropriate time in the right place to make several essential hormones, it's too slow a response to environmental changes like light," says geneticist Chory, the Howard H. and Maryam R. Newman Chair in Plant Biology, "It makes sense biologically that there is a faster, more direct way to coordinate and make these chemical messages."

While such details may seem abstract, these basic biochemical insights are fundamental to the development of better crops and therapies for disease, including the breeding of plants more adapted to challenging environments and the discovery of new medicines, explains biochemist Noel, holder of the Arthur and Julie Woodrow Chair.

"It is essential to understand what steps bodies, plant or animal, take to construct and process chemical information in order to produce more food and treat metabolic diseases," he says.

Chory, Noel and Salk post-doctoral researchers Zuyu Zheng and Yongxia Guo, co-first authors on the paper, made their discovery by studying thale cress (Arabidopsis thaliana), a small plant with tiny white flowers that grows wild throughout much of the world. Thale cress has become a profoundly important research model to scientists studying genetics and metabolism, because it grows to maturity in only six weeks and its genes can be quickly tested for what instructions they give the plant. This allows researchers to rapidly learn what genes regulate the production of proteins and enzymes essential to metabolism. This basic information can then translate into better crop plants and disease treatments.

When the top of a plant is shaded, two different parts of the plant quickly adjust their growth rate so the plant can compete for sunlight. The stem or trunk of the plant will rapidly grow longer, often in only a few hours, in an attempt to avoid being trapped in shade. Another part, the tissue known as the "petiole," which connects a leaf to the stem, also elongates as it reaches for the sun. Together, these two organs allow the plant to more efficiently carry out photosynthesis, which turns light and carbon dioxide into life sustaining food.

The growth of the two parts is controlled by two different metabolic pathways that make two very distinct chemical hormones. Stem growth is triggered by the hormone auxin, while petiole growth is stimulated by the hormone ethylene. Our own bodies use hormones in similar growth pathways, which follow the same complicated metabolic rules.

Zheng and Guo discovered that there is an enzyme, called VAS1, that functions as a canal between the auxin and ethylene pathways. Like the Panama Canal, VAS1 isn't merely a shortcut between two pathways, but a gating mechanism that regulates these two different hormone levels simultaneously, ensuring that different parts of the plant grow in a balanced way and not wildly out of control. With VAS1 in place as a gate, there's no need to wait for genes to turn on and off to make these hormones in a coordinated manner.

These tiny plants have given us a new way of thinking about coordinating metabolism in all species, says Chory. "Evolution is conservative," she explains, "If you find a mechanism in one system, the likelihood is high that you will quickly find it throughout all of nature."

Noel agrees, adding, "We've shown that there needs to be serious re-thinking of the conventional wisdom of how metabolic process are synchronized and how this synchronization fails in disease."

###

Other researchers on the study were: Xinhua Dai and Yunde Zhao, of the University of California-San Diego; Ond?ej Novk, of the Swedish University of Agricultural Sciences, Ume, Sweden, and Palacky University and the Academy of Science of Czech Republic, Olomouc, Czech Republic; and Karin Ljung, of the Swedish University of Agricultural Sciences, Ume, Sweden.

The work was supported by the Howard Hughes Medical Institute, the National Institutes of Health, the National Science Foundation, the Internal Grant Agency of Palacky University in the Czech Republic, the Grant Agency of the Academy of Sciences of the Czech Republic, the Swedish Governmental Agency for Innovation Systems and the Swedish Research Council.


[ Back to EurekAlert! ] [ | E-mail | Share Share ]

?


AAAS and EurekAlert! are not responsible for the accuracy of news releases posted to EurekAlert! by contributing institutions or for the use of any information through the EurekAlert! system.


Plants cut the mustard for basic discoveries in metabolism [ Back to EurekAlert! ] Public release date: 5-Feb-2013
[ | E-mail | Share Share ]

Contact: Andy Hoang
AHoang@salk.edu
619-861-5811
Salk Institute

A tiny weed reveals an unexpected chemical connection between hormone pathways

LA JOLLA, CA----You might think you have nothing in common with mustard except hotdogs. Yet based on research in a plant from the mustard family, Salk scientists have discovered a possible explanation for how organisms, including humans, directly regulate chemical reactions that quickly adjust the growth of organs. These findings overturn conventional views of how different body parts coordinate their growth, shedding light on the development of more productive plants and new therapies for metabolic diseases.

Metabolism refers to all the chemical reactions in the body that drive the basic processes of life: birth, growth, reproduction, digestion, sensing and so on. These reactions are orchestrated and quickened by molecular machines called enzymes. Until now, it was believed that each metabolic function required an entirely separate enzyme pathway. Further complicating the picture, scientists focused almost exclusively on genes switching on and off as the means by which each step in the pathway was regulated, roughly analogous to waiting for a part to be ordered then manufactured before the engine can run.

In a paper in this week's Nature Chemical Biology, Salk scientists and Howard Hughes Medical Institute Investigators Joanne Chory and Joseph P. Noel and their colleagues show that metabolic steps can be much more streamlined and linked. Unexpectedly, two separate pathways originally thought to be controlled solely by gene switches can have enzyme canals between them, allowing them to quickly share abundant building blocks for two separate chemical messages known as hormones. These hormones are manufactured in one part of the body in response to changes in environment and quickly alter growth in other parts. Many times, at least two hormones are needed to quickly adjust growth of different tissues in response to a single event.

"Genes are the instruction manuals for how cells build specific enzymes in a pathway, but if you have to wait for many enzymes to be made at the appropriate time in the right place to make several essential hormones, it's too slow a response to environmental changes like light," says geneticist Chory, the Howard H. and Maryam R. Newman Chair in Plant Biology, "It makes sense biologically that there is a faster, more direct way to coordinate and make these chemical messages."

While such details may seem abstract, these basic biochemical insights are fundamental to the development of better crops and therapies for disease, including the breeding of plants more adapted to challenging environments and the discovery of new medicines, explains biochemist Noel, holder of the Arthur and Julie Woodrow Chair.

"It is essential to understand what steps bodies, plant or animal, take to construct and process chemical information in order to produce more food and treat metabolic diseases," he says.

Chory, Noel and Salk post-doctoral researchers Zuyu Zheng and Yongxia Guo, co-first authors on the paper, made their discovery by studying thale cress (Arabidopsis thaliana), a small plant with tiny white flowers that grows wild throughout much of the world. Thale cress has become a profoundly important research model to scientists studying genetics and metabolism, because it grows to maturity in only six weeks and its genes can be quickly tested for what instructions they give the plant. This allows researchers to rapidly learn what genes regulate the production of proteins and enzymes essential to metabolism. This basic information can then translate into better crop plants and disease treatments.

When the top of a plant is shaded, two different parts of the plant quickly adjust their growth rate so the plant can compete for sunlight. The stem or trunk of the plant will rapidly grow longer, often in only a few hours, in an attempt to avoid being trapped in shade. Another part, the tissue known as the "petiole," which connects a leaf to the stem, also elongates as it reaches for the sun. Together, these two organs allow the plant to more efficiently carry out photosynthesis, which turns light and carbon dioxide into life sustaining food.

The growth of the two parts is controlled by two different metabolic pathways that make two very distinct chemical hormones. Stem growth is triggered by the hormone auxin, while petiole growth is stimulated by the hormone ethylene. Our own bodies use hormones in similar growth pathways, which follow the same complicated metabolic rules.

Zheng and Guo discovered that there is an enzyme, called VAS1, that functions as a canal between the auxin and ethylene pathways. Like the Panama Canal, VAS1 isn't merely a shortcut between two pathways, but a gating mechanism that regulates these two different hormone levels simultaneously, ensuring that different parts of the plant grow in a balanced way and not wildly out of control. With VAS1 in place as a gate, there's no need to wait for genes to turn on and off to make these hormones in a coordinated manner.

These tiny plants have given us a new way of thinking about coordinating metabolism in all species, says Chory. "Evolution is conservative," she explains, "If you find a mechanism in one system, the likelihood is high that you will quickly find it throughout all of nature."

Noel agrees, adding, "We've shown that there needs to be serious re-thinking of the conventional wisdom of how metabolic process are synchronized and how this synchronization fails in disease."

###

Other researchers on the study were: Xinhua Dai and Yunde Zhao, of the University of California-San Diego; Ond?ej Novk, of the Swedish University of Agricultural Sciences, Ume, Sweden, and Palacky University and the Academy of Science of Czech Republic, Olomouc, Czech Republic; and Karin Ljung, of the Swedish University of Agricultural Sciences, Ume, Sweden.

The work was supported by the Howard Hughes Medical Institute, the National Institutes of Health, the National Science Foundation, the Internal Grant Agency of Palacky University in the Czech Republic, the Grant Agency of the Academy of Sciences of the Czech Republic, the Swedish Governmental Agency for Innovation Systems and the Swedish Research Council.


[ Back to EurekAlert! ] [ | E-mail | Share Share ]

?


AAAS and EurekAlert! are not responsible for the accuracy of news releases posted to EurekAlert! by contributing institutions or for the use of any information through the EurekAlert! system.


Source: http://www.eurekalert.org/pub_releases/2013-02/si-pct020513.php

nikki minaj grammy performance shel silverstein niki minaj grammy performance grammys 2012 deadmau5 phoebe snow jennifer hudson tribute to whitney houston

GPS Guide: Birama Konar? Finds Inner Calm

The stress and strain of constantly being connected can sometimes take your life -- and your well-being -- off course. GPS For The Soul can help you find your way back to balance.

GPS Guides are our way of showing you what has relieved others' stress in the hopes that you will be able to identify solutions that work for you. We all have de-stressing "secret weapons" that we pull out in times of tension or anxiety, whether they be photos that relax us or make us smile, songs that bring us back to our heart, quotes or poems that create a feeling of harmony, or meditative exercises that help us find a sense of silence and calm. We encourage you to look at the GPS Guide below, visit our other GPS Guides here, and share with us your own personal tips for finding peace, balance and tranquility.

In his GPS Guide below, Birama Konar? explores what it takes to de-stress. He says, "Doing this exercise, I have actually come to learn more about myself." See what he discovered, then let us know in the comments what it is that motivates you to relax.

Second son of former President of Mali, Alpha Oumar Konar?, and historian Adame Ba Konar?, Birama Konar? holds a Bachelor's degree in media studies and a Master's in communications.

Konar? is the managing Director of Binthily Communication, based in Bamako. He is also a columnist for the newspaper, Les Echos.

Konar? (born in 1982) is one of the youngest and most promising writers in his country. He has published two books including Koulouba, The Hill on the Head (Cauris Publishing, 2003), Daisies Do Not Grow in the Desert (Jamana, 2010). His latest book, Plucked Africa, Chronicles of a Bankrupt Continent is being printed.

For more GPS Guides, click here.

"; var coords = [-5, -72]; // display fb-bubble FloatingPrompt.embed(this, html, undefined, 'top', {fp_intersects:1, timeout_remove:2000,ignore_arrow: true, width:236, add_xy:coords, class_name: 'clear-overlay'}); });

Source: http://www.huffingtonpost.com/2013/02/05/birama-konare-gps-guide_n_2615930.html

dave matthews ambien wwdc heart attack grill madden 13 cover dalai lama tamera mowry

Monday, 4 February 2013

Video: Brian Williams previews the Puppy Bowl



>>> millions of football fans will watch the super bowl tonight. the big game is not for everybody. brian williams got a behind the scenes look at animal planet 's counter attempt at programming.

>> reporter: it would be nice to think actual nfl refs did this before the game , this being the puppy bowl , he is an actor and a good one. all we're really interested in is the moment when the command goes out and the guests of honor arrive.

>> when people walk in this room, what do they usually say at first?

>> i think they are usually surprised by how small it is. the puppies end up looking kind of big on it.

>> reporter: the puppies job as they say it is to love anyone with a pulse on the field on this tiny sound stage on the west side of manhattan , they do everything puppies do at home, they drink, wrestle and pee on the easy to clean surface and do other things that puppies do at home.

>> they have to poop, poop patrol come on in.

>> we have many personal fouls. we try not to get those exposed too much.

>> reporter: there is a half time show of kittens, which some people find ex ploy tiff, others find it empowering to the kittens. back to the action and the real reason we are here, a field of dreams , a room full of puppies. it was one in particular, pearl, who really got to us and our relationship escalated quickly. in my own defense, she was all over me.

>> oh, stop kissing me. okay. if you must. importantly, these are shelter dogs, all 63 of them. because right down to their individual player profiles on the web, they are all so irresistible. that's one of the frustrations that viewers have of this taped in advance.

>> the people that don't know the lead time and they call in and e-mail you and say, i want to adopt you and pearl is already in a happy home situation.

>> your home.

>> at least you can assure people they all go live in good homes. they all go to happy, healthy homes.

>> if your team isn't in the big game sunday, if there are too many penalty timeouts, you may consider this the warm and fuzzy game day alternative.

>> you are ridiculously cute. scared

Source: http://video.today.msnbc.msn.com/today/50683486/

jeff saturday jason smith jon corzine austin rivers austin rivers sweet home alabama etch a sketch