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Special Protein Helps Maintain An Efficient Brain
The instruction manual for maintaining an efficient brain may soon include a section on synaptotagmin-IV (Syt-IV), a protein known to influence learning and memory, thanks to a study by University of Wisconsin-Madison researchers.
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Linus Pauling Prize For Health Research Won By Vitamin D Expert Dr. Michael Holick
Dr. Michael Holick, a professor of medicine, physiology and biophysics at the Boston University School of Medicine who has revolutionized the understanding of vitamin D and its role in disease prevention, has received the $50,000 Linus Pauling Institute Prize for Health Research.
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How Mitochondria Get Their Membranes Bent
Mitochondria are the powerhouses of cells. Underneath their smooth surface they harbor an elaborately folded inner membrane. It holds a multitude of bottleneck like invaginations, which expand into elongated cavities (cristae). The narrow shape of the entrance or pore to the cristae ("crista junction") allows separation of the intracristal space and storage of molecules. Cytochrome c, for example, an important signaling protein in programmed cell death (apoptosis), is stored in this compartment. When apoptosis is triggered, the pores enlarge and cytochrome c is released into the cytosol. Thus, understanding of how the pore diameter and the shape of the inner membrane are regulated on a molecular basis is of great relevance to a better understanding of mitochondrial function in general. Recently, in cooperation with other research teams, the group of Prof. Andreas Reichert, who has been appointed as professor for Mitochondrial Biology to the Goethe University within the Cluster of Excellence Macromolecular Complexes in 2007, has identified two proteins linked in an antagonistic manner that are relevant for governing inner membrane structure.
Diagnostics

Drugs Can Eliminate River Blindness, Study Finds

The disease onchocerciasis, also known as river blindness, can be eliminated using drugs, according to a WHO study, BBC reports. The disease, which infects about 37 million people worldwide, is caused by a "nematode worm that can live inside the human body for years" and is transmitted to people through the bite of a black fly, the news service writes. The worms spread through the body and when they eventually die, the human immune system "reacts fiercely," which "destroys living tissue - especially the eye," according to BBC (7/21). The study findings were published Tuesday in the journal PLoS Neglected Tropical Diseases. According to a WHO release, the "multi-country study showed that treatment with ivermectin stopped further infections and transmission" in three endemic areas in Mali and Senegal (7/21). For years, scientists have known that drugs can control the disease. "But now they believe it can be eliminated," writes BBC. The study found that "after 17 years of treating the entire community with the drug ivermectin regularly, few infections remained." In addition, follow-up studies did not turn up additional infections. Although, it is "not yet clear whether the same success can be repeated in other endemic areas," researchers "say an important principle has been established. It is possible to wipe out a disease that has a terrible impact on entire communities," according to BBC (7/21). This information was reprinted from globalhealth.kff.org with kind permission from the Henry J. Kaiser Family Foundation. You can view the entire Kaiser Daily Global Health Policy Report, search the archives and sign up for email delivery at globalhealth.kff.org. © Henry J. Kaiser Family Foundation. All rights reserved.


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