Saturday, April 27, 2013

Researchers identify key cellular organelle involved in gene silencing

Friday, April 26, 2013

RNA molecules, made from DNA, are best known for their role in protein production. MicroRNAs (miRNAs), however, are short (~22) nucleotide RNA sequences found in plants and animals that do not encode proteins but act in gene regulation and, in the process, impact almost all biological processes ? from development to physiology to stress response.

Present in almost in every cell, microRNAs are known to target tens to hundreds of genes each and to be able to repress, or "silence," their expression. What is less well understood is how exactly miRNAs repress target gene expression.

Now a team of scientists led by geneticists at the University of California, Riverside has conducted a study on plants (Arabidopsis) that shows that the site of action of the repression of target gene expression occurs on the endoplasmic reticulum (ER), a cellular organelle that is an interconnected network of membranes ? essentially, flattened sacs and branching tubules ? that extends like a flat balloon throughout the cytoplasm in plant and animal cells.

"Our study is the first to demonstrate that the ER is where miRNA-mediated translation repression occurs," said lead researcher Xuemei Chen, a professor of plant cell and molecular biology and a Howard Hughes Medical Institute-Gordon and Betty Moore Foundation Investigator. "To understand how microRNAs repress target gene expression, we first need to know where microRNAs act in the cell. Until now no one knew that membranes are essential for microRNA activity. Our work shows that an integral membrane protein, AMP1, is required for the miRNA-mediated target gene repression to be successful. As AMP1 has counterparts in animals, our findings in plants could have broader implications."

Study results appear today in the journal Cell.

Simply put, DNA makes RNA, and then RNA makes proteins. Specifically, RNA encodes genetic information that can be "translated" into the amino acid sequence of proteins. But noncoding RNAs ? RNAs that do not encode proteins ? are increasingly found to act in numerous biological processes. MicroRNAs are a class of noncoding RNAs whose main function is to downregulate gene expression.

Research on miRNAs has increased tremendously since they were first identified about 20 years ago. In the case of diseases, if some genes are up- or down-regulated, miRNAs can be used to change the expression of these genes to fight the diseases, thus showing therapeutic potential.

MicroRNAs are known to regulate target genes by two major modes of action: they either destabilize the target RNAs, leading to their degradation, or they do not impact the stability of the target RNAs, but simply prevent them from being translated into proteins ? a process known as translation inhibition. The end result of translation inhibition is that the genes do not get expressed. Just how miRNAs cause translational inhibition of their target genes is not well understood.

"We were surprised that the ER is required for the translational inhibition activity of miRNAs," Chen said. "This new knowledge will expedite our understanding of the mechanism of gene silencing. Basically, now we know where to look: the ER. We also suspect it is the rough ER portions that are involved."

Chen explained that the ER has two types: rough and smooth. Rough ER, which synthesizes and packages proteins, looks bumpy; smooth ER, which acts in lipid synthesis and protein secretion, resembles tubes. The ER protein AMP1, she said, is anchored in the rough ER.

"My lab has been conducting research on AMP1 for many years," she said. "And it's this protein that drew our attention to the ER. First, we realized that AMP1 is involved in miRNA-mediated translational inhibition. Then, since we already knew that AMP1 is localized in the rough ER, we shifted our focus to this organelle."

Next, her lab will attempt to crack the mechanism of miRNA-mediated translational inhibition. They will investigate, too, how miRNAs are recruited to the ER.

###

University of California - Riverside: http://www.ucr.edu

Thanks to University of California - Riverside for this article.

This press release was posted to serve as a topic for discussion. Please comment below. We try our best to only post press releases that are associated with peer reviewed scientific literature. Critical discussions of the research are appreciated. If you need help finding a link to the original article, please contact us on twitter or via e-mail.

This press release has been viewed 51 time(s).

Source: http://www.labspaces.net/127962/Researchers_identify_key_cellular_organelle_involved_in_gene_silencing

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The School of Internet Marketing ? Spreaker Podcasting ... - GeekCast

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by James Martell on April 26, 2013

James Martell, founder of The School of Internet Marketing, has been podcasting since before the word ?podcast? was ever even coined ? and a lot has changed in the last 10 years. Podcasting is now easier than ever before.

In this episode of The School of Internet Marketing podcast, James chats with Ivan Ho, fellow podcaster of the OMT Wired Up show, about the Spreaker platform. Spreaker makes it easy to publish your own podcast with little technological know-how.

You can use Spreaker to easily upload a recorded podcast or even broadcast live. In this episode of The School of Internet Marketing podcast, you?ll hear about the process of getting organized and prepared for publishing a well put-together podcast. The pair talks about:

  • Coming up with topics.
  • Professional touches to add to your podcast ? graphics, intros and more.
  • Getting organized for a show that flows well.
  • The ups and downs of doing business online.

Podcasting is a fantastic way to build an audience online ? and in order to be successful, it?s crucial to always be working on increasing your audience. Don?t assume podcasting isn?t right for your business ? as James talks about, it can actually be a great way to expand your reach and can fit a number of businesses with the right angle.

Listen in to learn about how podcasting is changing the game for many internet marketers and how you can use this platform to your advantage.

Visit:
http://www.theschoolofinternetmarketing.com

Source: http://geekcast.fm/archives/spreaker-podcasting-broadcasting/

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Amazon to open shipping centre in Czech Republic: report

LONDON, April 26 (Reuters) - Arsenal will keep with tradition and form a guard of honour for new Premier League champions Manchester United when the sides meet at The Emirates on Sunday. "That is part of the tradition of English football and I want that, of course, to be respected," Arsenal manager Arsene Wenger told a news conference on Friday. "I'm French, I work in England and the English tradition should be respected. When you work somewhere abroad you have to respect the culture of the country," he added. ...

Source: http://news.yahoo.com/amazon-open-shipping-centre-czech-republic-report-132535977.html

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The NYPD Is Planning a Simulated Chemical Attack For New York Subways

A subway-borne chemical attack is one of those theoreticals that require the willful ignorance of regular passengers—for most of us, it's just better not to think about it. Not so for the NYPD, which yesterday announced a plan to test how a chemical or radiological attack would spread through the city's 200-odd miles of subway, by pumping an invisible gas through the system this summer. More »
    


Source: http://feeds.gawker.com/~r/gizmodo/full/~3/ufx5Endg3qU/the-nypd-is-planning-a-simulated-chemical-attack-for-new-york-subways

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Autism risk spotted at birth in abnormal placentas

Thursday, April 25, 2013

Researchers at the Yale School of Medicine have figured out how to measure an infant's risk of developing autism by looking for abnormalities in his/her placenta at birth, allowing for earlier diagnosis and treatment for the developmental disorder. The findings are reported in the April 25 online issue of Biological Psychiatry.

One out of 50 children are diagnosed with an autism spectrum disorder in the United States each year, according to the Centers for Disease Control and Prevention (CDC), but the diagnosis is usually made when these children are 3 to 4 years of age or older. By then the best opportunities for intervention have been lost because the brain is most responsive to treatment in the first year of life.

Senior author Harvey Kliman, M.D., research scientist in the Department of Obstetrics, Gynecology & Reproductive Sciences at the Yale School of Medicine, and research collaborators at the MIND Institute at the University of California, Davis, have found that abnormal placental folds and abnormal cell growths called trophoblast inclusions are key markers to identify newborns who are at risk for autism.

Kliman and his team examined 117 placentas from infants of at-risk families, those with one or more previous children with autism. These families were participating in a study called Markers of Autism Risk in Babies ? Learning Early Signs. Kliman compared these at-risk placentas to 100 control placentas collected by the UC Davis researchers from the same geographic area.

The at-risk placentas had as many as 15 trophoblast inclusions, while none of the control placentas had more than two trophoblast inclusions. Kliman said a placenta with four or more trophoblast inclusions conservatively predicts an infant with a 96.7% probability of being at risk for autism.

Currently, the best early marker of autism risk is family history. Couples with a child with autism are nine times more likely to have another child with autism. Kliman said that when these at-risk families have subsequent children they could employ early intervention strategies to improve outcomes. "Regrettably couples without known genetic susceptibility must rely on identification of early signs or indicators that may not overtly manifest until the child's second or third year of life," said Kliman.

"I hope that diagnosing the risk of developing autism by examining the placenta at birth will become routine, and that the children who are shown to have increased numbers of trophoblast inclusions will have early interventions and an improved quality of life as a result of this test," Kliman added.

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Yale University: http://www.yale.edu

Thanks to Yale University for this article.

This press release was posted to serve as a topic for discussion. Please comment below. We try our best to only post press releases that are associated with peer reviewed scientific literature. Critical discussions of the research are appreciated. If you need help finding a link to the original article, please contact us on twitter or via e-mail.

This press release has been viewed 58 time(s).

Source: http://www.labspaces.net/127925/Autism_risk_spotted_at_birth_in_abnormal_placentas

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Jenelle Evans Claims In-Laws Stole iPad, Fears Nude Photo Leak

Source: http://www.thehollywoodgossip.com/2013/04/jenelle-evans-claims-in-laws-stole-ipad-fears-another-nude-photo/

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Video: Talking Jeter

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Source: http://nbcsports.msnbc.com/id/21134540/vp/51665389#51665389

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