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Casey Finnerty

The Virus That Learns - Phenomena: The Loom - 0 views

  • Likewise, restriction enzymes are a dangerous defense, because they can chop up the distinctive stretches of DNA in a bacterium’s own genes. It avoids attacking itself by capping those sequences in its own DNA, so that the restriction enzymes can’t reach them.
  • Some species can muck up the production of new viruses, stealing their proteins before they can form shells. Others commit suicide upon infection, so as to avoid becoming an incubator for new viruses that would then kill their nearby relatives.
  • CRISPR genes can produce RNA molecules with a matching sequence. They grab onto the virus’s RNA and prevent them from being turned into proteins. The virus factory grinds to a halt.
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  • The bacteria hold onto an invading virus’s DNA, so that they are now prepared for a fresh attack. And over time, bacteria can build up little libraries of these virus barcodes. 
  • Last year, scientists at Indiana University surveyed the bacteria in people’s mouths and discovered 8,000 different viral barcodes–many of them corresponding to viruses scientists have yet to discover.
  • But if you build up a healthy store of antibodies to various strains of flu, smallpox, and other diseases, all that knowledge dies with you.
  • Not so for bacteria. When a microbe reproduces, it passes down its CRISPR genes and all of their viral barcodes to its descendants–including the ones it acquired in its own lifetime.
  • Last fall, for example, University of Cambridge scientists discovered viruses that carry an antidote for the suicide toxin made by their hosts. When the bacteria want to die, the virus forces them to live on. And just last month, University of Toronto scientists even discovered anti-CRISPR genes in viruses, which the viruses use to shut down the production of virus-killing molecules.
  • the scientists demonstrated that the ICP1 virus uses its CRISPR immune system to attack its host’s virus-attacking genes.
Richard Herron

Viruses Can Have Immune System, Study Finds | Biology | Sci-News.com - 1 views

  • A new research led by Dr Kimberley Seed from the Tufts University School of Medicine provides the first evidence that bacteriophages – viruses that infect and replicate within bacteria – can acquire a wholly functional and adaptive immune system.
  • The study, published today in the journal Nature, finds that a viral predator of the cholera bacteria can steal the functional immune system of bacteria and use it against its bacterial host.
  • Developing phage therapy is particularly important because some bacteria, called superbugs, are resistant to most or all current antibiotics.
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  • This study focused on a phage that attacks Vibrio cholerae, the bacterium responsible for cholera epidemics in humans.
  • Finding a CRISPR/Cas system in a phage shows that there is gene flow between the phage and bacteria even for something as large and complex as the genes for an adaptive immune system,”
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