Thursday, May 3, 2012

Dateline NBC Busts Kids Cheating on Test


Dateline NBC pulled a fast one Sunday night, but instead of targeting sexual predators, they took down ... a group of middle school kids cheating on a test.

The kids' parents were in on it, too. How did it go down?

In a physical education class, no less. The children were told they had to complete an obstacle course to audition for an "ultimate challenge" TV show.

Unbeknownst to them, Dateline was secretly recording the test, and had planted an actress who encouraged the kids to cheat by inflating their scores.

Their proud parents sat watching in an adjoining room.

The first time through, the kids tried to stop the actress from lying and insisted on posting their real results. The second time, though, they cracked.

Natalie Morales then came out and told the kids they've been set up to see if they cheat. Needless to say, they were mortified when they found out.

Dateline said the report was intended to show how peer pressure affects kids, and maybe so, but it was basically entrapment and public humiliation.

There's got to be a better way to prove a point, right?

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Wednesday, May 2, 2012

BlackBerry gets its game on at BBW, scores Jetpack Joyride and Sonic

BlackBerry gets its game on at BBW

One of the things BlackBerry has never really had going for it, is a deep games catalog. Now, that isn't about to change in one fell swoop, but things are about to get a lot better at BlackBerry World 2012. RIM's head of gaming, Anders Jeppsson, took to twitter to let the world know about the impressive pile of titles heading to the PlayBook and BlackBerry 10. The biggest names are certainly Jetpack Joyride, from Halfbrick (the studio behind Fruit Ninja), and Sonic the Hedgehog 4: Episode 1. Other games in the pipeline include Galaxy on Fire 2 and Star Marine, while Tomb Raider fans can get down with Lara Croft and the Guardian of Light starting today. Keep an ear out for more to hit during this week's BBW.

BlackBerry gets its game on at BBW, scores Jetpack Joyride and Sonic originally appeared on Engadget on Tue, 01 May 2012 11:23:00 EDT. Please see our terms for use of feeds.

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Gene that plays key role in inheritance (FANCM) identified

ScienceDaily (Apr. 30, 2012) ? Scientists of KIT and the University of Birmingham have identified relevant new functions of a gene that plays a crucial role in Fanconi anemia, a life-threatening disease. The FANCM gene is known to be important for the stability of the genome. Now, the researchers found that FANCM also plays a key role in the recombination of genetic information during inheritance. For their studies, the scientists used thale cress as a model plant.

Their results are newly published by the journal The Plant Cell.

Stability of the genome is ensured by a series of mechanisms. If these are lacking, the risk of cancer and other severe diseases is increased. Fanconi anemia is a recessive hereditary disease associated with dysplasia, degeneration of bone marrow, and an increased risk of leukemia and tumors. FANCM is one of the genes responsible for Fanconi anemia. So far, the deactivation of FANCM has been known to lead to genome instability in somatic cells, i.e. body cells that are not involved in reproduction. "We have now proven that FANCM does not only ensure genome stability in somatic cells, but also controls inheritance," explains Dr. Alexander Knoll from the Botanical Institute II of KIT, first author of the publication in The Plant Cell.

According to the findings, FANCM plays a key role in the combination of paternal and maternal traits in the germ cells. The gene can be detected in nearly all organisms, from bacteria to yeast to plants to man. For their studies, the researchers from Karlsruhe and Birmingham used thale cress (Arabidopsis thaliana) as a model organism. The genome of this plant belonging to the family of cruciferous plants is relatively small and completely sequenced. The researchers found that the FANCM-homologous gene At-FANCM ensures ordered distribution and recombination of the genetic material during the meiosis of the germ cells in thale cress. "These findings cannot only be applied in biomedicine, but also in plant breeding in order to specifically improve the properties of usable crops," explains the Head of the Botanical Institute II of KIT, Professor Holger Puchta.

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The above story is reprinted from materials provided by Helmholtz Association of German Research Centres.

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Journal Reference:

  1. Alexander Knoll, James D. Higgins, Katharina Seeliger, Sarah J. Reha, Natalie J. Dangel, Markus Bauknecht, Susan Schr?pfer, F. Christopher H. Franklin, Holger Puchta. The fanconi anemia ortholog FANCM ensures ordered homologous recombination in both somatic and meiotic cells in Arabidopsis thaliana. Plant Cell, April 30, 2012 DOI: 10.1105/tpc.112.096644

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.

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Tuesday, May 1, 2012

Control of gene expression: Histone occupancy in your genome

ScienceDaily (Apr. 30, 2012) ? When stretched out, the genome of a single human cell can reach six feet. To package it all into a tiny nucleus, the DNA strand is tightly wrapped around a core of histone proteins in repeating units -- each unit known as a nucleosome. To allow access for the gene expression machinery the nucleosomes must open up and regroup when the process is complete.

In the May 1, 2012, issue of Genes & Development, researchers at the Stowers Institute for Medical Research demonstrate how failure to restore order has lasting consequences. During the process of gene expression, a factor known as Chd1 promotes nucleosome reassembly on the DNA strand. Without it, yeast cells are unable to attach a chemical mark called ubiquitin to one of the four types of histone proteins, which in turn hampers nucleosome re-establishment throughout the entire yeast genome. In mammalian cells, this important step could be perturbed in disease states such as cancer.

"We have used the yeast Saccharomyces cerevisiae as a model system to study histone mono-ubiquitination and found that the mechanism is conserved in human cells," says Stowers Investigator Ali Shilatifard, Ph.D., who led the study. Why that's important dates back to studies initiated a decade ago on a gene called MLL, which is involved in the development of an aggressive type of leukemia in infants.

Previously, when Shilatifard's group analyzed the yeast version of MLL, they found that it enzymatically modified a histone called H3 by decorating it with a biochemical flag. In this case, that flag was not an ubiquitin, but rather a methyl group. Genes occupied by nucleosomes containing methylated H3 are generally switched on. Later, the lab confirmed that the same histone methylase activity was evolutionarily conserved from yeast to human cells, setting the stage for the molecular analysis of MLL activity in yeast.

The current study is based on a concept known as "histone crosstalk." It posits that rather than acting individually, histones within a nucleosome, particularly H3 and H2B, carry on a complex biochemical conversation among themselves based on how they are chemically modified. For example, previous studies had hinted that mono-ubiquitination at one histone (H2B) precedes methylation of another (H3), suggesting that the primary role of the former was to stimulate the latter. Thus, in this paper, Shilatifard and his team asked whether the sole function of H2B mono-ubiquitination was to regulate H3 methylation.

What Jung Shin Lee, Ph.D., a postdoctoral researcher and the study's first author, and Alexander Garrett, a bioinformatics specialist in the Shilatifard lab and co-author, found was unexpected: although yeast carrying mutant Chd1 showed a loss of H2B ubiquitination, H3 methylation was fairly unaffected. "Surprisingly, when we looked genome-wide, we observed that methylation patterns of other histones within nucleosomal complexes were fairly normal in Chd1 mutants," says Lee. "That told us that there are other functions associated with ubiquitination of H2B besides methylation of H3."

To reveal what those functions were, the investigators applied a technique that has been mastered by Penn State biochemist Frank Pugh, Ph.D. The methodology, known as nucleosomal occupancy mapping, can nail down to a single DNA base the very spot on a DNA strand where a complex of histone proteins is sitting -- not in just one gene, but in all 5,700 or so yeast genes simultaneously.

Collaborating with Pugh's lab, Shilatifard's group used the technique to map loci where nucleosomes formed in the genome of normal versus Chd1-mutant yeast. Mutants showed decreased occupancy of nucleosomes compared to non-mutant cells, particularly in longer genes, suggesting that mutants have difficulty recreating the proper nucleosome array after gene expression.

"To synthesize RNA from DNA, the normal chromosome structure must be loosened to make way for RNA polymerases, enzymes that transcribe DNA," explains Garrett. "After that, the DNA must be re-condensed through the reassembly of nucleosomes." That, rather than H3 methylation, is the primary activity impaired when the protein Chd1 is nonfunctional. Finally, the investigators experimentally manipulated cultured human cells to eliminate expression of the human counterpart of Chd1 -- a molecular trick equivalent to analyzing Chd1-mutant yeast -- and observed impaired mono-ubiquitination of human H2B, just like in yeast.

"These experiments show that the function of Chd1 that we see in single-celled yeast is conserved in humans," says Shilatifard, praising what he calls the awesome power of yeast biochemistry and genetics. "Basically, we are able to use yeast as a test tube to discover what the function of these proteins is in you and me. Given the fact that histone mono-ubiquitination is associated with processes that can lead to the development of human cancer, the molecular information obtained in yeast are indispensable for better understanding the role these factors play during human development and disease pathogenesis," says Shilatifard.

Additional co-authors of the study from the Stowers Institute include Yoh-Hei Takahashi, Ph.D., Deqing Hu, Ph.D., and Chris Seidel, Ph.D. Also contributing were Kuangyu Yen, Ph.D. of the Pennsylvania State University, and Jessica Jackson of St. Louis University School of Medicine.

Funding for the study came from the National Institute of General Medicine, the Alex's Lemonade Stand Foundation for Childhood Cancer, and the Stowers Institute for Medical Research.

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The above story is reprinted from materials provided by Stowers Institute for Medical Research, via Newswise.

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


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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.

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Achievement Unlocked: Apple Wins Applecom.com And Appleprinters.com After WIPO Complaint

apple_rainbow_logoApple still doesn't own iPad.com, apple.co.uk or many other domains that contain its name or names of its products, but it is now the proud owner of applecom.com and appleprinters.com -- two domains that were the subject of a complaint Apple made to the World Intellectual Property Organization complaint Apple made about a month ago. If you now visit those URLs, they automatically redirect to Apple's main site.

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Recruiting Is Broken, And Video-Driven Readyforce Wants To Fix It

readyforce logoDozens of startups have launched in the past few years claiming to fix the broken recruiting and hiring process. One of them, Readyforce, has already signed up some well-known startups with a relatively straightforward and compelling idea, and it's opening up its beta test today. When it comes to finding the right job applicant, CEO Alex Mooradian says that "it's all about data." And when Mooradian says "data," he also means videos, which are a big part of a Readyforce profile. Unlike other sites that just ask people to record videos on their own (often resulting in stilted, awkward videos), Readyforce has actually hired interviewers to do 20-minute webcam conversations with the applicants, which can be edited down into a 3-minute highlight reel. (If you're not happy with the interview you can do it again.) Users can also fill out something called the "infinite quiz" (in reality, Mooradian says there are more than 100 questions) which tests their interests and skills.

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Basketball Wives Producers to Sue Jennifer Williams?


The producers of VH1's Basketball Wives are considering filing a lawsuit against cast member Jennifer Williams for publicly trashing the reality show.

After Jennifer Williams sued Nia Crooks for slapping her in the face while taping an episode (below), VH1 reportedly became absolutely livid with her.

Now producers are ready rebut Williams' legal and media rampage, during which she said the show portrays African-American women negatively.

Producers feel Williams' lawsuit is frivolous - her contract says she waives such a right to sue based on physical confrontations, the network says.

Moreover, her explicit show-bashing is in violation of her contract, which forbids cast members from doing media appearances or press without approval.

Or speaking negatively about the show, which the nut job clearly has.

VH1 feels J-Dubs is "ruining the brand" they worked so hard to build, which is hilarious, but actually not a legal stretch if she's in breach of contract.

Crooks, for her part, was charged with battery for the slap. Really.

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