Genes that control the timing of organ formation during development also control timing of aging and death, and provide evidence of a biological timing mechanism for aging, Yale researchers report in the journal Science.
| Molecular & Cell Biology | December 28, 2005 09:58 PM |
Genes that control the timing of organ formation during development also control timing of aging and death, and provide evidence of a biological timing mechanism for aging, Yale researchers report in the journal Science.
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| Microbiology | December 28, 2005 08:58 PM |
Earlier this year, researchers at the University of Pennsylvania School of Medicine identified a link between a critical cancer pathway and an Epstein-Barr Virus (EBV) protein known to be expressed in a number of EBV-associated cancers. Their findings demonstrated a new mechanism by which EBV can transform human B cells from the immune system into cancerous cells, which can lead to B-cell lymphomas. Now, they have found that the viral protein--called EBNA3C (for EBV nuclear antigen)--mediates the degradation of the retinoblastoma protein, an important molecular brake for cell proliferation.
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| Molecular & Cell Biology | December 28, 2005 08:58 PM |
With seed money from Johns Hopkins Institute of Cell Engineering, a Johns Hopkins geneticist and her team have discovered a critical link between the health of stem cells and the length of the chromosome ends within them.
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| Health & Medicine | December 28, 2005 08:15 PM |
A compound isolated from a cyanobacterium, a type of blue-green algae known as Nostoc, shows promise of becoming a natural drug candidate for fighting Alzheimer's and other neurodegenerative diseases, according to an in vitro study by researchers in Switzerland. It is believed to be the first time that a potent agent against Alzheimer's has been isolated from cyanobacteria, commonly known as 'pond scum.' The study was published in the Dec. 26 issue of the Journal of Natural Products, a monthly peer-reviewed joint publication of the American Chemical Society and the American Society of Pharmacognosy.
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| Molecular & Cell Biology | December 28, 2005 08:15 PM |
Neuroscientists have known for decades that the adult brain can reorganize neural pathways in response to new experiences, for example, by changing the firing pattern and responses of neurons. But it has remained an open question whether structural changes accompany this functional plasticity. In a new study published in the open-access journal PLoS Biology, Wei-Chung Allen Lee and colleagues report the continuous monitoring of neurons in the mouse adult visual cortex over the course of a few months, revealing that the adult brain can indeed rewire its circuits under normal conditions.
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| Biology | December 28, 2005 08:15 PM |
Since many animals live beyond their fertile years, biologists have searched for evolutionary clues to this extended lifespan. What role, if any, does natural selection play in the evolution of the postreproductive lifespan?
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| Gene Therapy | December 28, 2005 08:14 PM |
In a study to be published in the January 2006 issue of Nature Biotechnology, researchers led by a team of scientists at Memorial Sloan-Kettering Cancer Center have devised a novel strategy that uses stem cell-based gene therapy and RNA interference to genetically reverse sickle cell disease (SCD) in human cells. This research is the first to demonstrate a way to genetically correct this debilitating blood disease using RNA interference technology.
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