Thursday, November 7, 2013

Unique change in protein structure guides production of RNA from DNA

Unique change in protein structure guides production of RNA from DNA


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7-Nov-2013



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Contact: Anne Holden
anne.holden@gladstone.ucsf.edu
415-734-2534
Gladstone Institutes



Gladstone-led study sheds light on critical molecular process




SAN FRANCISCO, CANovember 7, 2013One of biology's most fundamental processes is something called transcription. It is just one step of many required to build proteinsand without it life would not exist. However, many aspects of transcription remain shrouded in mystery. But now, scientists at the Gladstone Institutes are shedding light on key aspects of transcription, and in so doing are coming even closer to understanding the importance of this process in the growth and development of cellsas well as what happens when this process goes awry.


In the latest issue of Molecular Cell, researchers in the laboratory of Gladstone Investigator Melanie Ott, MD, PhD, describe the intriguing behavior of a protein called RNA polymerase II (RNAPII). The RNAPII protein is an enzyme, a catalyst that guides the transcription process by copying DNA into RNA, which forms a disposable blueprint for making proteins. Scientists have long known that RNAPII appears to stall or "pause" at specific genes early in transcription. But they were not sure as why.


"This so-called 'polymerase pausing' occurs when RNAPII literally stops soon after beginning transcription for a short period before starting up again," explained Dr. Ott, who is also a professor of medicine at the University of California, San Francisco, with which Gladstone is affiliated. "All we knew was that this behavior was important for the precise transcription of DNA into RNA, so we set out to understand how, when andmost importantlywhy."


The research team focused their efforts on a segment of RNAPII called the C-terminal domain, or CTD. This section is most intimately involved with transcription regulation. Previous research had found that CTD's chemical structure is modified before and during transcription. However, the combinations of modifications as well as precisely how they influence or control transcription remained unclear. So in laboratory experiments on cells extracted from mammals, the researchers took a closer look.


The first breakthrough came when the research team identified a new type of modification, known as acetylation, which regulated transcription.


"Our next breakthrough occurred when we pinpointed the precise locations on the CTD where acetylation occurredand realized it was unique to higher eukaryotes," explained Sebastian Schrder, PhD, the paper's first author. "We then wanted to see how this mammalian-specific acetylation fit into the realm of polymerase pausing."


Now that the team knew where the CTD became acetylated, their next goal was to find out when. Clues to the timing of acetylation came in experiments where they mutated RNAPII so that CDT was unable to become acetylated. In these cases, the length of polymerase pausing dropped, and the necessary steps for the completion of transcription failed to occur. Additional experiments revealed the elusive timeline of acetylation and transcription.


"RNAPII binds to DNA to prepare for transcription. Shortly after that we see polymerase pausingat which point the CTD becomes highly acetylated," continued Dr. Shrder. "Soon after the pause, CTD is then deacetylatedthe original modification is reversedand transcription continues without a hitch."


Polymerase pausing is not unique to mammalsin fact it was characterized in HIV, the virus that causes AIDS, many years agobut the fact that the CTD becomes acetylated just before or during the time when transcription is paused appears to be unique. Drs. Ott and Schrder argue that CTD acetylation is a stabilizer, preparing RNAPII for efficient completion of transcription and slowing down the process to make sure everything is functioning correctlynot unlike the final 'systems check' a pilot must perform before takeoff.


These findings offer important insight into the relationship between acetylation and transcription. And given the importance of transcription in the growth and maturation of cells in general, the team's result stands to inform scientists about a variety of cellular processes. These include, for example, the mechanisms behind stem-cell development and what happens when normal cellular growth spirals out of control, such as in cancer.


"However, there is still much we don't know about acetylation as it relates to transcription," said Dr. Ott. "For example, if CTD acetylation is important for stabilizing transcriptional pausing, why do we also see CTD acetylation at non-paused genes, although at different locations? Further, we believe there may be other steps in the transcription cycle that depend upon acetylation. Our most immediate goal is to find them. By doing so, we hope to deepen our understanding of one of nature's most elegant biological processes."

###


Dr. Schrder performed this research at Gladstone while completing his PhD at the University of Heidelberg, Germany. Eva Herker, PhD, Sean Thomas, Phd, Katrin Kaehlcke, Sungyoo Cho, Katherine Pollard, PhD, John Capra, PhD and Benoit Bruneau, PhD, also participated in this research at Gladstone, which was supported by the National Institutes of Health, the National Institute of Environmental Health Sciences, the Boehringer Ingelheim Fonds, the Human Frontiers Science Program and an E.G.G. fellowship.


About the Gladstone Institutes



Gladstone is an independent and nonprofit biomedical-research organization dedicated to accelerating the pace of scientific discovery and innovation to prevent, treat and cure cardiovascular, viral and neurological diseases. Gladstone is affiliated with the University of California, San Francisco.




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Unique change in protein structure guides production of RNA from DNA


[ Back to EurekAlert! ]

PUBLIC RELEASE DATE:

7-Nov-2013



[


| E-mail

]


Share Share

Contact: Anne Holden
anne.holden@gladstone.ucsf.edu
415-734-2534
Gladstone Institutes



Gladstone-led study sheds light on critical molecular process




SAN FRANCISCO, CANovember 7, 2013One of biology's most fundamental processes is something called transcription. It is just one step of many required to build proteinsand without it life would not exist. However, many aspects of transcription remain shrouded in mystery. But now, scientists at the Gladstone Institutes are shedding light on key aspects of transcription, and in so doing are coming even closer to understanding the importance of this process in the growth and development of cellsas well as what happens when this process goes awry.


In the latest issue of Molecular Cell, researchers in the laboratory of Gladstone Investigator Melanie Ott, MD, PhD, describe the intriguing behavior of a protein called RNA polymerase II (RNAPII). The RNAPII protein is an enzyme, a catalyst that guides the transcription process by copying DNA into RNA, which forms a disposable blueprint for making proteins. Scientists have long known that RNAPII appears to stall or "pause" at specific genes early in transcription. But they were not sure as why.


"This so-called 'polymerase pausing' occurs when RNAPII literally stops soon after beginning transcription for a short period before starting up again," explained Dr. Ott, who is also a professor of medicine at the University of California, San Francisco, with which Gladstone is affiliated. "All we knew was that this behavior was important for the precise transcription of DNA into RNA, so we set out to understand how, when andmost importantlywhy."


The research team focused their efforts on a segment of RNAPII called the C-terminal domain, or CTD. This section is most intimately involved with transcription regulation. Previous research had found that CTD's chemical structure is modified before and during transcription. However, the combinations of modifications as well as precisely how they influence or control transcription remained unclear. So in laboratory experiments on cells extracted from mammals, the researchers took a closer look.


The first breakthrough came when the research team identified a new type of modification, known as acetylation, which regulated transcription.


"Our next breakthrough occurred when we pinpointed the precise locations on the CTD where acetylation occurredand realized it was unique to higher eukaryotes," explained Sebastian Schrder, PhD, the paper's first author. "We then wanted to see how this mammalian-specific acetylation fit into the realm of polymerase pausing."


Now that the team knew where the CTD became acetylated, their next goal was to find out when. Clues to the timing of acetylation came in experiments where they mutated RNAPII so that CDT was unable to become acetylated. In these cases, the length of polymerase pausing dropped, and the necessary steps for the completion of transcription failed to occur. Additional experiments revealed the elusive timeline of acetylation and transcription.


"RNAPII binds to DNA to prepare for transcription. Shortly after that we see polymerase pausingat which point the CTD becomes highly acetylated," continued Dr. Shrder. "Soon after the pause, CTD is then deacetylatedthe original modification is reversedand transcription continues without a hitch."


Polymerase pausing is not unique to mammalsin fact it was characterized in HIV, the virus that causes AIDS, many years agobut the fact that the CTD becomes acetylated just before or during the time when transcription is paused appears to be unique. Drs. Ott and Schrder argue that CTD acetylation is a stabilizer, preparing RNAPII for efficient completion of transcription and slowing down the process to make sure everything is functioning correctlynot unlike the final 'systems check' a pilot must perform before takeoff.


These findings offer important insight into the relationship between acetylation and transcription. And given the importance of transcription in the growth and maturation of cells in general, the team's result stands to inform scientists about a variety of cellular processes. These include, for example, the mechanisms behind stem-cell development and what happens when normal cellular growth spirals out of control, such as in cancer.


"However, there is still much we don't know about acetylation as it relates to transcription," said Dr. Ott. "For example, if CTD acetylation is important for stabilizing transcriptional pausing, why do we also see CTD acetylation at non-paused genes, although at different locations? Further, we believe there may be other steps in the transcription cycle that depend upon acetylation. Our most immediate goal is to find them. By doing so, we hope to deepen our understanding of one of nature's most elegant biological processes."

###


Dr. Schrder performed this research at Gladstone while completing his PhD at the University of Heidelberg, Germany. Eva Herker, PhD, Sean Thomas, Phd, Katrin Kaehlcke, Sungyoo Cho, Katherine Pollard, PhD, John Capra, PhD and Benoit Bruneau, PhD, also participated in this research at Gladstone, which was supported by the National Institutes of Health, the National Institute of Environmental Health Sciences, the Boehringer Ingelheim Fonds, the Human Frontiers Science Program and an E.G.G. fellowship.


About the Gladstone Institutes



Gladstone is an independent and nonprofit biomedical-research organization dedicated to accelerating the pace of scientific discovery and innovation to prevent, treat and cure cardiovascular, viral and neurological diseases. Gladstone is affiliated with the University of California, San Francisco.




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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/2013-11/gi-uci110713.php
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Microsoft Office Web Apps takes great leap toward Office equality



What are the most striking features of the new version of Office Web Apps? The ones that aren't there.


It isn't the fact that the Save button has been nixed (shades of Google Docs!) or that multiple users can edit the same document in real time and not stomp all over each other's work. It's how little -- as opposed to how much -- variation there is between OWA and its desktop counterparts.


That small margin makes a big difference.


Better collaborative editing than the desktop
Tony Bradley at PCWorld covers in detail all the new goodies in OWA, which still consists only of Word, Excel, and PowerPoint. The biggest is simultaneous co-authoring: Many users can log into OWA, open the same document, and work on it simultaneously. Flags within the document tell you where each user is.


One particularly smart touch here is how Microsoft has set different levels of editing granularity for each document type. For Word, it's a paragraph; for Excel, it's a cell; for PowerPoint, it's a slide. They're good commonsense defaults, and in my conversation with Microsoft's people, they hinted at the possibility that it could be made even more fine-grained.


From a practical standpoint, it's unlikely two people will attempt to edit the same sentence at once. But if Microsoft can nudge the line of thinking a smidge further in that direction, it's a sign of how completely Web apps could be able to eclipse their desktop cousins. For one, the desktop versions of these apps don't have anything like the simultaneous-editing features found in OWA -- a case where the Web app actually sports a feature superior to the desktop app.


This brings up the first of two big questions about OWA. Do Web apps need to displace their desktop counterparts?


The answer may be different depending on whether you're asking Microsoft or end-users. End-users may enjoy the convenience of OWA, but there comes a point where OWA simply can't deliver. The longer and more complex the document, the greater the odds OWA -- or your browser -- will simply gag.


There's little question that Microsoft needs to create a product portfolio off the desktop that's as valuable and rich as the one the company has created on it. But I doubt it can move people off desktop editions of Office and into OWA anytime soon, and not just because OWA's feature set is lacking.


Source: http://www.infoworld.com/t/office-software/microsoft-office-web-apps-takes-great-leap-toward-office-equality-230424?source=rss_applications
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Chrome users on Windows will soon have to get extensions through Google's store

Google already hopes to prevent security threats in Chrome by blocking downloads, and it's now planning a similarly cautious approach for extensions. The company has announced that all extensions for the browser's Windows beta and stable versions must be hosted in the Chrome Web Store as of January. ...


Source: http://feeds.engadget.com/~r/weblogsinc/engadget/~3/h3m8HLowb20/
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Splintered Republicans Must Take Their Medicine


There is a path to sanity for the national Republican Party to be gleaned from the mixed election results on Tuesday night — not just sanity, actually, but victory.



The problem is that professional Republicans of all stripes will have to swallow some medicine — and as we know, everybody always thinks the other guy should take the medicine while he should get the candy.





Source: http://www.realclearpolitics.com/2013/11/07/splintered_republicans_must_take_their_medicine_319475.html
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Levi Johnston Takes Bristol Palin to Court for Joint Custody of Tripp

Their relationship may be long gone, but Bristol Palin and Levi Johnston are still at odds over their son, Tripp.


Though the former vice presidential candidate's daughter has had full custody of the little boy, her former fiancée has filed a petition asking for equal custody of the child.


In the documents, the 23-year-old asks for as much time with his son as the 4-year-old's mother. However, Bristol responded claiming that he owes $66,000 in child support, hinting that the request is financially motivated.


Back in 2008, the pair experienced happy times, announcing both their engagement and her pregnancy during the presidential election. Young love didn't last, though, and the two broke off their engagement in December 2008, reunited, then called it quits in August 2010. Since then, Levi married Sunny Oglesby.


Source: http://celebrity-gossip.net/bristol-palin/levi-johnston-takes-bristol-palin-court-joint-custody-tripp-957450
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Johnston files petition for custody of son Tripp


JUNEAU, Alaska (AP) — The father of Bristol Palin's son is seeking at least equal custody.

Levi Johnston filed a petition for custody last month saying he wants 4-year-old Tripp to be in his mother's and father's lives equally.

The couple had agreed in 2010 that Palin would have primary physical custody and the two would share legal custody, according to Thomas Van Flein, Palin's attorney at that time. Johnston was given visitation and had agreed to pay child support.

Palin's current attorney, John Tiemessen, said that as of Oct. 15, the Child Support Services Division reported that Johnston owed about $66,000 in back support.

Palin and Johnston were thrust into the national spotlight as expectant, unwed teenagers in 2008, when Palin's mother, Sarah Palin, was tapped as the Republican vice presidential candidate.

Johnston and Bristol Palin had an on-off relationship before splitting for good. He has since married and has a daughter.

Bristol Palin has appeared in several reality series, including one for Lifetime that documented her life as a single mom.

Source: http://news.yahoo.com/johnston-files-petition-custody-son-tripp-224204344.html
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5 ways BYOD is shaking up tech support



November 07, 2013







Amid the clamor of "bring your own device" (BYOD), a question lurks in the background: "What happens to technical service and support?" Concerns for the tech support function encompass the extremes, from agents being overwhelmed with calls, to their becoming inhabitants of a help desk ghost town.


On the one hand, it’s easy to imagine a flood of calls as employees attempt to access wireless networks or synch their e-mail, especially in companies that permit the use of any device type. At the same time, as more people own smartphones, they are increasingly accustomed to resolving issues independently, through online forums, communities and other means of self-support.


By 2016, says Gartner analyst Jarod Greene, help desks will see a 25% to 30% drop in user-initiated call volume, as BYOD drives a companion trend of BYOS, or “bring your own support.”



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Source: http://www.infoworld.com/d/consumerization-of-it/5-ways-byod-shaking-tech-support-230379?source=rss_infoworld_top_stories_
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