Monday, October 28, 2013

Model virus structure shows why there's no cure for common cold

Model virus structure shows why there's no cure for common cold


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28-Oct-2013



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Contact: Ann C. Palmenberg
acpalmen@wisc.edu
608-262-7519
University of Wisconsin-Madison





MADISON, Wis. In a pair of landmark studies that exploit the genetic sequencing of the "missing link" cold virus, rhinovirus C, scientists at the University of Wisconsin-Madison have constructed a three-dimensional model of the pathogen that shows why there is no cure yet for the common cold.


Writing today (Oct. 28, 2013) in the journal Virology, a team led by UW-Madison biochemistry Professor Ann Palmenberg provides a meticulous topographical model of the capsid or protein shell of a cold virus that until 2006 was unknown to science.


Rhinovirus C is believed to be responsible for up to half of all childhood colds, and is a serious complicating factor for respiratory conditions such as asthma. Together with rhinoviruses A and B, the recently discovered virus is responsible for millions of illnesses yearly at an estimated annual cost of more than $40 billion in the United States alone.


The work is important because it sculpts a highly detailed structural model of the virus, showing that the protein shell of the virus is distinct from those of other strains of cold viruses.


"The question we sought to answer was how is it different and what can we do about it? We found it is indeed quite different," says Palmenberg, noting that the new structure "explains most of the previous failures of drug trials against rhinovirus."


The A and B families of cold virus, including their three-dimensional structures, have long been known to science as they can easily be grown and studied in the lab. Rhinovirus C, on the other hand, resists culturing and escaped notice entirely until 2006 when "gene chips" and advanced gene sequencing revealed the virus had long been lurking in human cells alongside the more observable A and B virus strains.


The new cold virus model was built "in silico," drawing on advanced bioinformatics and the genetic sequences of 500 rhinovirus C genomes, which provided the three-dimensional coordinates of the viral capsid.


"It's a very high-resolution model," notes Palmenberg, whose group along with a team from the University of Maryland was the first to map the genomes for all known common cold virus strains in 2009. "We can see that it fits the data."


With a structure in hand, the likelihood that drugs can be designed to effectively thwart colds may be in the offing. Drugs that work well against the A and B strains of cold virus have been developed and advanced to clinical trials. However, their efficacy was blunted because they were built to take advantage of the surface features of the better known strains, whose structures were resolved years ago through X-ray crystallography, a well-established technique for obtaining the structures of critical molecules.


Because all three cold virus strains all contribute to the common cold, drug candidates failed as the surface features that permit rhinovirus C to dock with host cells and evade the immune system were unknown and different from those of rhinovirus A and B.


Based on the new structure, "we predict you'll have to make a C-specific drug," explains Holly A. Basta, the lead author of the study and a graduate student working with Palmenberg in the UW-Madison Institute for Molecular Virology. "All the [existing] drugs we tested did not work."


Antiviral drugs work by attaching to and modifying surface features of the virus. To be effective, a drug, like the right piece of a jigsaw puzzle, must fit and lock into the virus. The lack of a three-dimensional structure for rhinovirus C meant that the pharmaceutical companies designing cold-thwarting drugs were flying blind.


"It has a different receptor and a different receptor-binding platform," Palmenberg explains. "Because it's different, we have to go after it in a different way."


###

In addition to Basta and Palmenberg, co-authors of the new studies include Jean-Yves Sgro, Shamaila Ashraf, Yury Bochkov and James E. Gern, all of UW-Madison.




Terry Devitt, 608-262-8282, trdevitt@wisc.edu


The new rhinovirus C studies were supported by the National Institutes of Health, grants AI17331 and U19 AI104317.



NOTE: An image of the model can be downloaded at http://www.news.wisc.edu/newsphotos/coldVirus_13.html


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Model virus structure shows why there's no cure for common cold


[ Back to EurekAlert! ]

PUBLIC RELEASE DATE:

28-Oct-2013



[


| E-mail

]


Share Share

Contact: Ann C. Palmenberg
acpalmen@wisc.edu
608-262-7519
University of Wisconsin-Madison





MADISON, Wis. In a pair of landmark studies that exploit the genetic sequencing of the "missing link" cold virus, rhinovirus C, scientists at the University of Wisconsin-Madison have constructed a three-dimensional model of the pathogen that shows why there is no cure yet for the common cold.


Writing today (Oct. 28, 2013) in the journal Virology, a team led by UW-Madison biochemistry Professor Ann Palmenberg provides a meticulous topographical model of the capsid or protein shell of a cold virus that until 2006 was unknown to science.


Rhinovirus C is believed to be responsible for up to half of all childhood colds, and is a serious complicating factor for respiratory conditions such as asthma. Together with rhinoviruses A and B, the recently discovered virus is responsible for millions of illnesses yearly at an estimated annual cost of more than $40 billion in the United States alone.


The work is important because it sculpts a highly detailed structural model of the virus, showing that the protein shell of the virus is distinct from those of other strains of cold viruses.


"The question we sought to answer was how is it different and what can we do about it? We found it is indeed quite different," says Palmenberg, noting that the new structure "explains most of the previous failures of drug trials against rhinovirus."


The A and B families of cold virus, including their three-dimensional structures, have long been known to science as they can easily be grown and studied in the lab. Rhinovirus C, on the other hand, resists culturing and escaped notice entirely until 2006 when "gene chips" and advanced gene sequencing revealed the virus had long been lurking in human cells alongside the more observable A and B virus strains.


The new cold virus model was built "in silico," drawing on advanced bioinformatics and the genetic sequences of 500 rhinovirus C genomes, which provided the three-dimensional coordinates of the viral capsid.


"It's a very high-resolution model," notes Palmenberg, whose group along with a team from the University of Maryland was the first to map the genomes for all known common cold virus strains in 2009. "We can see that it fits the data."


With a structure in hand, the likelihood that drugs can be designed to effectively thwart colds may be in the offing. Drugs that work well against the A and B strains of cold virus have been developed and advanced to clinical trials. However, their efficacy was blunted because they were built to take advantage of the surface features of the better known strains, whose structures were resolved years ago through X-ray crystallography, a well-established technique for obtaining the structures of critical molecules.


Because all three cold virus strains all contribute to the common cold, drug candidates failed as the surface features that permit rhinovirus C to dock with host cells and evade the immune system were unknown and different from those of rhinovirus A and B.


Based on the new structure, "we predict you'll have to make a C-specific drug," explains Holly A. Basta, the lead author of the study and a graduate student working with Palmenberg in the UW-Madison Institute for Molecular Virology. "All the [existing] drugs we tested did not work."


Antiviral drugs work by attaching to and modifying surface features of the virus. To be effective, a drug, like the right piece of a jigsaw puzzle, must fit and lock into the virus. The lack of a three-dimensional structure for rhinovirus C meant that the pharmaceutical companies designing cold-thwarting drugs were flying blind.


"It has a different receptor and a different receptor-binding platform," Palmenberg explains. "Because it's different, we have to go after it in a different way."


###

In addition to Basta and Palmenberg, co-authors of the new studies include Jean-Yves Sgro, Shamaila Ashraf, Yury Bochkov and James E. Gern, all of UW-Madison.




Terry Devitt, 608-262-8282, trdevitt@wisc.edu


The new rhinovirus C studies were supported by the National Institutes of Health, grants AI17331 and U19 AI104317.



NOTE: An image of the model can be downloaded at http://www.news.wisc.edu/newsphotos/coldVirus_13.html


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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/2013-10/uow-mvs102813.php
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Whiskers, cat ears oh my: Cat video festival

FILE - In this Thursday, Aug. 30, 2012, file photo, a show begins at the The Walker Art Center's first "Internet Cat Video Film Festival," showcasing the best of cat films on the Internet in Minneapolis. The festival came to Brooklyn, New York, on Friday, Oct. 25, 2013. (AP Photo/Craig Lassig, File)







FILE - In this Thursday, Aug. 30, 2012, file photo, a show begins at the The Walker Art Center's first "Internet Cat Video Film Festival," showcasing the best of cat films on the Internet in Minneapolis. The festival came to Brooklyn, New York, on Friday, Oct. 25, 2013. (AP Photo/Craig Lassig, File)







(AP) — Game over. Cats have won the Internet.

At least that was the conclusion among the many attendees of the Internet Cat Video Festival on Friday. Decked out with cat ears and painted-on whiskers, they lined up around the block to do in a group what they already do in front of their computers: Watch amusing cat flicks. This time, there was beer and pierogi.

Cat videos have been so popular online that watching them has become synonymous with wasting time. There are tens of millions of cat videos on YouTube on any given day. They are also abundant on Vine, Twitter's video-sharing app, and on Instagram. One older gem, uploaded to YouTube in 2007, has generated more than 33 million views. It's called "Keyboard Cat." ''Keyboard Dog," meanwhile, has just a measly 4.6 million.

"The cute factor is very important," said Steve Lozic, 28, while waiting for the show to begin at the Warsaw concert venue in the trendy Williamsburg section of Brooklyn, a borough that even President Barack Obama has declared "cool."

Lozic, who works in advertising, said one of his favorite clips involves cats interacting with iPads, with one cat simply "killing it," as it paws at an iPad screen.

The event was a traveling offshoot of the Minneapolis Walker Art Center's festival of the same name, which now draws 10,000 attendees who ooh and ahh at famous felines such as Keyboard Cat, Grumpy Cat, Henri the morose, existentialist le Chat Noir and nameless kitties trying to jump into cardboard boxes with hilarious results. The inaugural festival, held last year, received more than 10,000 video submissions from fame-seeking cats — or at least their owners.

The star attendee of Brooklyn's video festival, though, was Lil Bub, a runty kitty who was born with "multitude of genetic anomalies which all add up to one of nature's happiest accidents," according to her website. Lil Bub, it turns out, is a "perma-kitten," that is, a full-grown cat that has stayed small and kept kitten-like features. On top of that, she has an extra toe on all of her paws and her tongue is always out because her teeth never grew in. Lil Bub merchandise, from stickers to T-shirts and baby onesies, has helped raise money for animal charities around the country.

It's hard to say why cats have proven far more popular than, say, dogs in the online video world. Neysa Smith, 22, who also works in advertising offered one theory:

"Cats are the best animal ever," said Smith, who, like Lozic, painted on a cat face in honor of the festival. "They are smarter than dogs."

Also spotted at the event were several cat tails and a man with a surprisingly calm gray cat perched on his shoulder.

Not spotted: dogs.

The festival's next stop is Rochester, N.Y.'s George Eastman House on Dec. 1. Next year's schedule includes Austin, Texas, Oakland, Calif., Portland, Ore., and Minneapolis.

__

Online: http://www.walkerart.org/calendar/2013/internet-cat-video-festival-and-tour-2013-201

Associated PressSource: http://hosted2.ap.org/APDEFAULT/495d344a0d10421e9baa8ee77029cfbd/Article_2013-10-28-Cat%20Videos-Festival/id-5da37b5b09984dff923cc7ddaf464439
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Good news for Dexter fans looking to relive the show's former glory: Netflix is getting exclusive ri

Good news for Dexter fans looking to relive the show's former glory: Netflix is getting exclusive rights to all eight seasons of the show. The first four will be available starting October 31, and that should keep you plenty busy until the second four hit on January 1.

Read more...


    






Source: http://feeds.gawker.com/~r/gizmodo/full/~3/As_fLVqLSJM/good-news-for-dexter-fans-looking-to-relive-the-shows-f-1453560412
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Sigma 60mm F2.8 DN




By Jim Fisher



The Sigma 60mm F2.8 DN ($239 direct) is the largest and most expensive lens that the company currently offers for mirrorless cameras, but it's still fairly light and compact when compared with SLR glass. The prime produces a 90mm (full-frame equivalent) field of view when paired with a Sony NEX camera, and a tighter 120mm viewpoint when mounted on a Micro Four Thirds camera. It's not optically stabilized, which is a downer given its short-telephoto design, but Olympus Micro Four Thirds photographers and Panasonic GX7 owners will be fine thanks to in-body stabilization.



It measures 2.2 by 2.4 inches (HD), weighs 7.5 ounces, and sports a 46mm filter thread. Like the other lenses in the DN series, it's available in black or silver, its barrel is metal, and the focus ring has no texture to it. Your mileage may vary, but I prefer a focus ring that delivers a bit more grip. A reversible lens hood is included, as is a soft carrying case. The minimum focus distance is 19.7 inches, so it's by no means a macro lens. Micro Four Thirds shooters should look to the Olympus M.Zuiko Digital ED 60mm f2.8 Macro if close focus is a concern.



I used Imatest to check the performance when paired with the Sony Alpha 3000. It's an impressive performer, delivering 2,342 lines per picture height at f/2.8 and virually no distortion. Edges are nearly as sharp as the center, and sharpness is even from f/2.8 through f/5.6. My only gripe is that it's not stabilized, which coupled with the f/2.8 aperture and short-telephoto field of view forces you to use a faster shutter speed to get a crisp handheld shot. It's not the only short-telephoto lens for mirrorless cameras that's impressed us; the Sony 50mm f/1.8 resolves 2,055 lines at its maximum aperture, is capable of capturing more than twice the light as the Sigma, and is optically stabilized.



The Sigma 60mm F2.8 DN is another solid entry in the company's lens catalog. It isn't stabilized, but it comes in at an attractive price point. Micro Four Thirds shooters may prefer the Olympus 60mm Macro due to its close focusing capability, but its price tag is double that of the Sigma, and many Micro Four Thirds cameras have built-in stabilization. If you're looking at the lens for a NEX system, you're better served with the Sony 50mm f/1.8. Its field of view is a little wider, but it's also quite sharp, it's stabilized, and it's not that much more expensive than the Sigma.




Source: http://feedproxy.google.com/~r/ziffdavis/pcmag/~3/J9y1Tee7bfU/0,2817,2426391,00.asp
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Mirantis brings enterprise-ready OpenStack distribution to the cloud


The OpenStack cloud platform marketplace has become more crowded with the introduction of yet another distribution of OpenStack. The new Mirantis OpenStack is an open source distribution being billed as enterprise-ready and as more flexible than alternative distros already on the market.


Mirantis is no stranger to the OpenStack community. Until now the company has been primarily focused on services and training. The company has built custom OpenStack clouds and performed services for customers such as AT&T, Cisco, eBay, Gap, NASA, PayPal, and Verizon, among others. It also integrated OpenStack with Softlayer for bare-metal provisioning at IBM and trained Red Hat's global field staff on the OpenStack technology.


[ Also on InfoWorld: VMware warns of multiple ESX, vCenter, and vSphere vulnerabilities | Pivotal adds mobile platform development with Xtreme Labs acquisition | Track the latest trends in virtualization in InfoWorld's Virtualization Report newsletter. ]


But now the company is moving beyond providing the services that allow companies to stand up their own cloud infrastructure, and is making available a new OpenStack distribution designed for the enterprise market and based on its years of hands-on experience and implementations.


There are a number of other commercially supported distributions already on the market from companies like Canonical, Hewlett-Packard, Piston Cloud, Rackspace, Red Hat, and Suse. But Mirantis' claim to fame is centered on being what the company calls the first "zero lock-in" OpenStack distribution.


When asked to elaborate on how Mirantis OpenStack differs from other distributions on the market, the company's president and CEO Adrian Ionel said that unlike other distributions, Mirantis OpenStack has no vendor lock-in. Other distributions being offered by operating system vendors are pretty much bound to those companies' respective operating systems.


"We don't try to cram our customers into a box or up-sell them with hard bundles," Ionel said. "Customers get flexibility and choice in key areas of the cloud stack to suit their own requirements. They get their choice of hypervisor [KVM, XenServer, ESXi, etc.], operating systems and network topologies."


The company's OpenStack software comes with a management tool that allows customers to install, deploy, and manage multiple OpenStack environments from different vendors, not just Mirantis. Even though Mirantis OpenStack works across multiple platform types, it all happens within a single control window.


The goal, according to Ionel, is to provide customers with the flexibility to use what they want and to do it in an efficient manner.


The Mirantis OpenStack distribution includes all the core compute, networking, and storage modules included in the main OpenStack project, the Havana platform, which was only just recently released and includes new orchestration and monitoring capabilities that Mirantis also supports.


Source: http://www.infoworld.com/d/virtualization/mirantis-brings-enterprise-ready-openstack-distribution-the-cloud-229609?source=rss_infoworld_blogs
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Stocks mostly rise on hope US stimulus to continue


LONDON (AP) — Global stock markets were mostly higher Monday amid growing expectations that the U.S. Federal Reserve won't start reducing its monetary stimulus until at least the first quarter of next year.

With uncertainty over the raising of the U.S. borrowing limit temporarily resolved, investors have focused on other matters, notably when the Federal Reserve will reduce its mammoth monetary stimulus that has been a boon for stock markets.

U.S. hiring and durable goods orders for September were weaker than expected, signaling that growth momentum may be slowing and reinforcing expectations that a scaling back of stimulus known as "tapering" won't begin until next year, Mitul Kotecha of Credit Agricole CIB in Hong Kong said in a market commentary.

Further U.S. data releases this week including September industrial production, retail sales, inflation and consumer confidence as well as a Fed policy meeting could reaffirm that expectation, he said. The Fed is buying $85 billion of U.S. government bonds and other securities with the aim of keeping interest rates low to support economic recovery.

"The bad news is good philosophy of markets means that data is helping to aid expectations that Fed tapering may be delayed," he said. "We continue to anticipate tapering to begin in January although admittedly the market is shifting expectations to even later."

After Asian indexes closed higher, trading was more cautious in Europe. Germany's DAX was flat at 8,981.47, as was Britain's FTSE 100, at 6,718.68. The CAC-40 in France, however, was off 0.5 percent at 4,250.40.

Wall Street was expected to rise modestly on the open, with Dow futures up 0.1 percent at 15,514 and S&P 500 futures up the same rate to 1,755.50.

In Asia, Japan's Nikkei 225 rose 2.2 percent to 14,396.04, recovering from a big drop last week. Hong Kong's Hang Seng added 0.5 percent to 22,806.58.

China's Shanghai Composite Index rebounded from earlier losses to rise fractionally to 2,133.87, putting aside worries over a possible credit crunch following the Chinese central bank's refusal last week to inject funds into money markets to curb frothy credit growth.

Benchmarks in Taiwan, Seoul, Malaysia and Singapore were also higher.

In energy trading, benchmark U.S. crude for December delivery was down 8 cents at $97.77 a barrel in electronic trading on the New York Mercantile Exchange. The contract gained 74 cents on Friday.

The euro was down 0.1 percent at $1.3799, while the dollar shed 0.1 percent against the Japanese yen, to 97.66 yen.

Source: http://news.yahoo.com/stocks-mostly-rise-hope-us-stimulus-continue-120636136--finance.html
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What The New 'Star Wars' Movie Need: Ben Skywalker

By Ryan Rigley While there may not have been any official "Star Wars VII" casting announcements as of yet, we now have a breakdown of the official "Star Wars VII" production crew. Joining J. J. Abrams and Lawrence Kasdan, who are currently in the process of writing the screenplay, are director of photography Dan Mindel, […]Source: http://moviesblog.mtv.com/2013/10/28/star-wars-movie-need-ben-skywalker/
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