Monday, June 10, 2013

Apple announces new Mac Pro with cylindrical design, 12-core Intel Xeon E5 CPU, flash storage, Thunderbolt 2.0 and support for up to three 4K displays

Apple's new Mac Pro announced with cylindrical design, 12core Intel Xeon E5 CPU, Thunderbolt 20 and support for 4K displays

It's been brewing for a while, and now Apple has finally redesigned its flagship cheese grater pro desktop. The 2013-era Mac Pro has been totally redesigned with a new, cylindrical chassis and vastly upgraded internals that have been designed to last for "(another) 10 years." At the center of the new Mac Pro is a 12-core, 256-bit Intel Xeon E5 processor with 1,866MHz DDR3 RAM capable of 60GB/s data transmission. Following the trend of the MacBooks, the new power tower uses PCIe-based flash storage, and so pro users will be relying upon four USB 3.0 and six Lightning 2.0 ports (that can take up to 6 devices per port with 20Gbps throughput) for expandability. Fortunately, for those of you who intend on placing the hardware beneath your desk, the expansion ports light up to help you find your connections in the gloom. Other connections include HDMI-out 1.4, dual gigabit Ethernet jacks, WiFi 802.11ac, Bluetooth 4.0 and the usual pair of 3.5mm audio in and out ports.

This machine is also the first Mac that'll ship with dual AMD FirePro GPUs as standard, which'll support 4K displays. Of course, the most striking change is in the design, which occupies 1/8th the volume of the current Mac Pro and stands 9.9-inches tall and 6.6-inches wide. The chance is thanks to a new thermal core, a triangular air duct that runs through the center of the hardware -- with one huge fan mounted at the top. Presumably, this new model has also been tweaked to conform to new regulations concerning electrical shielding, meaning that the hardware can finally return to European shores when it arrives later in the year -- at a (probably high) price that's still to be decided.

Update: You can now check out our eyes-on of the new machine here!

Follow our liveblog for all of the latest news from WWDC 2013.

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Source: Apple

Source: http://feeds.engadget.com/~r/weblogsinc/engadget/~3/y2_SM-LklTU/

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How Archaea might find their food: Sensor protein characterized

June 10, 2013 ? The microorganism Methanosarcina acetivorans lives off everything it can metabolise into methane. How it finds its sources of energy, is not yet clear. Scientists at the Ruhr-Universit?t Bochum together with colleagues from Dresden, Frankfurt, Muelheim and the USA have identified a protein that might act as a "food sensor." They characterised the molecule in detail and found both similarities and differences to the system that is responsible for the search for food in bacteria.

MsmS has a different function to that thought

The protein MsmS has so far only been studied from a bioinformatics point of view. Computer analyses of its gene sequence had predicted that it might be a phytochrome, i.e. a red light sensor. Using spectroscopic methods, the research team of the current study have refuted this theory. MsmS has a heme cofactor, like haemoglobin in red blood cells, and can, among other things, bind the substance dimethyl sulphide. This is one of the energy sources of Methanosarcina acetivorans. MsmS might thus serve the microorganism as a sensor to directly or indirectly detect this energy source. In genetic studies, the scientists also found evidence that MsmS regulates systems which are important for the exploitation of dimethyl sulphide.

Archaea: flexible "eaters"

Methanosarcina acetivorans belongs to the Archaea which constitute the third domain of life, alongside Bacteria and Eukarya; the term Eukarya comprising all living organisms with a cell nucleus. Many of them are adapted to extreme conditions or are able to use unusual energy sources. Among the organisms that live from methane production, the so-called methanogenic organisms, M. acetivorans is one of the most flexible when it comes to the choice of food sources. It converts many different molecules into methane, and thus produces energy. How M. acetivorans detects the different food sources, is still largely unknown.

In Archaea, unlike bacteria

For this purpose, bacteria use the so-called two-component system: when a sensor protein comes in contact with the food source, the protein modifies itself; it attaches a phosphate group to a certain amino acid residue, the histidine. The phosphate group is then transferred to a second protein. In methanogenic organisms such a process could trigger cellular processes that activate the methane production. Archaea might also use comparable sensor proteins in a way similar to bacteria. MsmS would be a candidate for such a task, because the analyses of the research team showed that it is able to transfer a phosphate residue to an amino acid. The target site of this phosphorylation is, however, probably not histidine. "So there could be differences between the signal transduction systems of Archaea and Bacteria" speculates Prof. Dr. Nicole Frankenberg-Dinkel from the work group Physiology of Microorganisms. "It is also interesting that the heme cofactor is covalently bound, i.e. linked with the protein by an electron-pair bond. This is very uncommon for sensor proteins which are present in the cell fluid."

Source: http://feeds.sciencedaily.com/~r/sciencedaily/top_news/~3/x9JPmr4yXJg/130610095030.htm

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Apple iOS 7: Everything You Need to Know

Apple iOS 7: Everything You Need to Know

The new iOS 7 is here. Jony Ive's first iOS?minimalist, elegant, devoid of the infantile artifice that infected its recent incarnations. It's pretty impressive. And here's everything you need to know about it.

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Source: http://feeds.gawker.com/~r/gizmodo/full/~3/C2iiYStCJ0Y/apple-ios-7-everything-you-need-to-know-512269828

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Friday, May 24, 2013

Here's the Document that Started Apple's Hidden Irish Tax Scheme

The mega-valuable company that makes your laptop is under congressional scrutiny this week for offshore tax-dodging. It all started in 1980, when Apple's California execs moved their operation to Ireland with a fake company with the codename "Waldwill Limited."

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Source: http://feeds.gawker.com/~r/gizmodo/full/~3/uqk5AwKdxmI/heres-the-document-that-started-apples-hidden-irish-t-509119857

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When oxygen is short, EGFR prevents maturation of cancer-fighting miRNAs

May 23, 2013 ? Even while being dragged to its destruction inside a cell, a cancer-promoting growth factor receptor fires away, sending signals that thwart the development of tumor-suppressing microRNAs (miRNAs) before it's dissolved, researchers reported in an early online publication at Nature.

Under conditions of oxygen starvation often encountered by tumors, the epidermal growth factor receptor (EGFR) gums up the cell's miRNA-processing machinery, an international team led by scientists at The University of Texas MD Anderson Cancer Center discovered.

"So when hypoxia stresses a cell, signaling by EGFR prevents immature miRNAs from growing up to fight cancer," said senior author Mien-Chie Hung, Ph.D., professor and chair of MD Anderson's Department of Molecular and Cellular Oncology and holder of the Ruth Legett Jones Distinguished Chair.

The group's findings point to a potential new prognostic marker for breast cancer, Hung noted, but also provide the first evidence of a growth factor signaling pathway regulating miRNA maturation.

"Inside of a cell, you have signal induction, in this case through EGFR, and you also have a protein complex that processes precursors into mature miRNA to perform a function. They didn't appear to talk to each other, it's as if one speaks English and the other Chinese," Hung said. "This is the first paper to show how they communicate."

The scientists established the relationship in cell line experiments, confirmed it in a mouse model and human breast cancer samples, then found that it reduced breast cancer patient survival in a review of 125 cases.

A new cancer-promoting role identified for EGFR

EGFR penetrates the cell membrane to receive signals from growth factors outside of the cell. After a growth factor binds to it, EGFR conveys the signal into the cell by attaching phosphate groups to other proteins, often acting as a molecular "on switch."

In many cancers, EGFR is overexpressed or dysfunctional, constantly sending signals to cells to divide. Hung and colleagues found that EGFR also fuels cancer progression by stifling tumor-suppressing miRNAs.

As a tumor grows, large portions of its interior can become starved for oxygen (hypoxia) for lack of adequate blood vessels. This stress suffocates many tumor cells, but the few that endure become highly malignant, resist treatment and are most likely to spread, Hung said.

Anti-angiogenesis drugs designed to kill tumors by blocking their ability to spin webs of supportive blood vessels often succeed at first, Hung said, but then fail against the more malignant cells that survive hypoxia.

When hypoxia hits, EGFR gets active and gets eaten

Low-oxygen conditions cause EGFR overexpression. EGFR also is pulled into the cell interior, captured in cavities called vesicles and eventually fed into lysosomes, a membrane-enclosed organelle loaded with enzymes to dissolve proteins.

It was known that EGFR continues to signal even while caught in the vesicles, which actually prolongs its activation. Hung and colleagues found that EGFR signals to a key protein in miRNA processing called argonaute 2, or AGO2.

AGO2 connects with two other proteins called Dicer and TRBP to form a complex that processes microRNA precursors into mature miRNAs, which regulate gene expression after messenger RNA has been expressed but before it's translated into a protein.

Oncoprotein-regulating miRNAs don't grow up

The scientists found that EGFR attaches phosphate groups to AGO2, which in turn weakens AGO2's ability to connect with Dicer to produce mature microRNAs. EGFR's effect is stronger during oxygen starvation than under normal conditions.

The team identified a number of specific miRNAs affected by EGFR, most of which have been reported to have tumor suppressor characteristics. The miRNAs regulated by phosphorylated AGO2, including miR-31, miR-192 and miR-193a-5p, also shared a long-loop structure in their precursors that miRNAs unaffected by AGO2 phosphorylation lack.

Hypoxic environments around tumors promote metastasis by helping cells evade programmed cell death. Hung and colleagues showed that EGFR-mediated AGO2 phosphorylation blocks cell death and enhances invasiveness under hypoxia.

Experiments in a mouse model of breast cancer confirmed that expression of EGFR and the presence of phosphorylated AGO2 increase during tumor progression under oxygen-starved conditions.

EGFR-AGO2 connection found in human breast tumors; reduces survival

The hypoxia-EGFR-AGO2 connection was strong in tumor samples from 128 breast cancer patients, but it was low or absent in normal breast tissue. In 125 breast cancer cases analyzed by the team, half of 62 patients with high levels of phosphorylated AGO2 survived to 48 months and beyond. Median survival had not been reached for the 63 patients in the low-level group, but 78 percent had survived to 48 months.

"One can imagine other receptors for platelet-derived growth factor and insulin-like growth factor also regulating miRNAs, perhaps by regulating Dicer or TBRP," Hung said. "This is a turning-point paper; it will induce lots of new questions for scientists to pursue."

Source: http://feeds.sciencedaily.com/~r/sciencedaily/most_popular/~3/7P9oWD-qVgs/130523162256.htm

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Thursday, May 23, 2013

Some U.S. power companies say they face constant cyber attacks

BOSTON (Reuters) - Several U.S. power utilities say they face constant cyber attacks on critical systems, according to a report by two Democratic lawmakers amid warnings from the Obama administration that foreign hackers are seeking to attack the electric grid.

Congressmen Edward Markey of Massachusetts and Henry Waxman of California disclosed their findings on Tuesday as the House Energy and Commerce Committee held a hearing on cybersecurity.

In preparing the report the two asked some 160 utilities to describe their experiences fighting cyber attacks over the past five years.

More than a dozen utilities said they experienced daily, constant or frequent attempted cyber attacks, according to a 35-page report summarizing their responses.

The report cited an unidentified Northeastern power provider as saying it was under constant attack from cyber criminals as well as activist groups who have been targeting firms in the energy sector over the past few years.

A power provider from the Midwest said it experienced daily probes of its systems: "Much of this activity is automated and dynamic in nature, able to adapt to what is discovered during its probing process," the company said.

The U.S. public has become more aware of cyber threats against the grid and other critical infrastructure since late last year, when senior Obama Administration officials began warning that foreign enemies are looking to sabotage the U.S. power grid, air traffic control systems, financial institutions and other infrastructure.

Senior administration officials say they do not know of any successful destructive attack on the grid or other key infrastructure, but fear that hackers may have the ability to do so.

A bipartisan cybersecurity bill to protect the electric grid, introduced in 2010 by Markey and Waxman, passed the House of Representatives but not the Senate. The legislation has not been taken up again since then.

(Reporting by Jim Finkle; Editing by Phil Berlowitz)

Source: http://news.yahoo.com/u-power-companies-face-constant-cyber-attacks-171500879.html

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Wednesday, May 22, 2013

We're live from SID Display Week 2013 in Vancouver!

We're live from SID Display Week 2013 in Vancouver!

The biggest news of the day made its way out of Microsoft's Redmond headquarters a few hours ago, but there's plenty more to see just 150 miles to the north in Vancouver, British Columbia. SID's Display Week exhibition kicked off this morning, giving us an opportunity to get hands-on with some pretty nifty prototypes from LG and Samsung, including that first manufacturer's 5-inch flexible plastic OLED panel and a brilliant 3,200 x 1,800-pixel laptop display from the latter. We'll be scouring the floor over the days to come, on the hunt for similar innovations, many of which will likely find their way into our smartphones, laptops and living rooms later this year and beyond.

Protip: Use our "SID2013" tag to see this week's hottest Display Week news!

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Source: http://feeds.engadget.com/~r/weblogsinc/engadget/~3/JivbNmOA3xk/

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