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Science News Archive April 2014 - Page 11


Page 11 of 32

How the body fights against viruses

The human immune system uses enzymes like ADAR1 to modify viral genetic information, rendering it useless for new virus particles. The study reveals how the cell protects itself from accidental import of viral RNA into the nucleus.

SourceUniversity of Vienna·JournalProceedings of the National Academy of Sciences·DateApr 22, 2014

Inserm and the Institut Pasteur identify a new variant of Ebola virus in Guinea

Researchers from Inserm and the Institut Pasteur have identified a new variant of the Ebola virus in Guinea. The virus is highly contagious and has a high mortality rate, with symptoms including fever, severe diarrhea, and vomiting. The discovery highlights the need for increased measures to prevent transmission from wild fauna to humans.

New electric fish genus and species discovered in Brazil's Rio Negro

Researchers at UMass Amherst and INPA discovered a new genus and species of electric knifefish in the Negro River, revealing unique features such as electric organs and distinct pulse patterns. The discovery is expected to contribute to a better understanding of Amazonian biodiversity and its adaptations.

SourceUniversity of Massachusetts Amherst·JournalProceedings of the Academy of Natural Sciences of Philadelphia·DateApr 22, 2014

'Dustman' protein helps bin cancer cells

Researchers have discovered a new role for Cullin-5 in killing cancer cells by targeting proteins that drive cell division. The study suggests a possible test to identify responsive patients and develop more effective drugs.

SourceCancer Research UK·JournalProceedings of the National Academy of Sciences·DateApr 21, 2014

Queuing theory helps physicist understand protein recycling

Using the subway analogy, a physicist is applying queuing theory to study protein traffic jams in cells. By understanding these bottlenecks, he aims to discover mechanisms for alleviating them and develop new tools for synthetic biology. This research has the potential to impact areas such as development, inflammation and cancer.

Malfunction in molecular 'proofreader' prevents repair of UV-induced DNA damage

Researchers at the University of Pittsburgh discovered a malfunction in the molecular 'proofreading' machinery that repairs DNA damage caused by ultraviolet (UV) light. The protein UV-DDB makes stops along the DNA strand and transiently attaches to it, causing a proofreading change in its conformation, preventing repair in damaged areas.

SourceUniversity of Pittsburgh Schools of the Health Sciences·JournalProceedings of the National Academy of Sciences·DateApr 21, 2014

New approach may help manage the most troubling symptoms of dementia, lessen use of drugs

A new approach called DICE aims to reduce behavioral problems in dementia by empowering caregivers, patients, and health providers. The DICE method involves Describe, Investigate, Evaluate, and Create steps to change dementia patients' behavior through environmental modifications and other interventions.

SourceMichigan Medicine - University of Michigan·JournalJournal of the American Geriatrics Society·DateApr 21, 2014

Study: Centuries of sand to grow Mississippi Delta

Researchers found that the river's supply of sand, a key ingredient for rebuilding marshlands, will remain constant for at least 300 years. The study suggests that despite reduced sediment loads, the abundance of sand in the lower Mississippi River channel will continue to replenish wetlands.

SourceRice University·JournalNature Geoscience·DateApr 21, 2014

A plague in your family

The study analyzed 224 strains of Yersinia family members, revealing parallel independent evolution of pathogenicity in species like Yersinia pestis and enterocolitica. The researchers found that acquisition of specific genes and loss of metabolic functions are key traits for pathogenic species.

SourceWellcome Trust Sanger Institute·JournalProceedings of the National Academy of Sciences·DateApr 21, 2014

Progress made in developing nanoscale electronics

Scientists have successfully directed charges through single molecules using a bi-layer arrangement of organic molecules, enabling precise control over electronic properties. This breakthrough brings us closer to nanoscale circuitry, which could be used in various applications such as OLEDs and biomedical devices.

SourceUniversity of Rochester·JournalAdvanced Materials Interfaces·DateApr 21, 2014