Study reveals new activation mechanism for pain sensing channel

January 22nd, 2007

A group of scientists at the Scripps Research Institute has identified a mechanism that enables certain compounds to activate a pain sensing protein. The findings could lead to the development of potential new therapies for managing acute and chronic pain. The study was published January 21, 2007 in an advanced online edition of the journal Nature.

The researchers found that TRPA1, a protein that helps transmit pain signals, is a direct sensor of reactive chemicals. "While many noxious and pungent compounds were known to activate this pain receptor, we discovered that they do so by directly and irreversibly binding to the cysteine amino acids of this protein," said Ardem Patapoutian, a Scripps Research scientist whose laboratory conducted the study. "Our study shows that TRPA1 activation is directly linked to chemical insult."

"Cysteines, one of the twenty building blocks of all proteins, are known to undergo oxidation/reduction reactions," Patapoutian continued. "Somehow the TRPA1 protein is tuned to sense cysteine modifications. In fact, any cysteine reactive agent seems to activate TRPA1, although we don't know exactly how cysteine binding translates into ion channel activation."

But this activation mechanism comes with an interesting property.

"Generally, compounds that activate ion channels bind in a lock-and-key mechanism that is readily reversible," said Lindsey Macpherson, another author of the study and a Ph.D. candidate in the Scripps Research Kellogg School of Science and Technology. "The mechanism by which noxious compounds activate TRPA1 is unique. For example, compounds that activate an ion channels through a lock-and-key mechanism have structural similarity. TRPA1 activators have no structural similarity; instead, they share a common potential for chemical reactivity, and their binding is long-lasting."

TRPA1 is not unique among proteins to be activated by cysteine modifying agents, the study noted. Another signaling protein known as Kelch-like ECH-associated protein 1 (KEAP1) is activated by many of the same compounds that activate TRPA1; KEAP1 is a sensor for oxidative damage from free radicals and upregulates expression of antioxidant enzymes. Apparently, reactive compounds can activate at least two pathways through cysteine modification as a warning against cell damage, the study concluded.

"Our findings, which are the result of a successful collaboration with the Ben Cravatt and Peter Schultz labs at Scripps Research, show that modification of reactive cysteines within TRPA1 can cause channel activation," Macpherson said. "Our research efforts are now aimed at further understanding how binding of these compounds activate the channel, and identifying the physiological role of TRPA1 in sensing oxidative stress." The protein is currently being investigated by several pharmaceutical companies as a potential target for chronic pain, Patapoutian noted.

Source: Scripps Research Institute


print this article email this article download pdf blog this article bookmark this article     Digg this Stumble it share on Facebook share on Reddit add to delicious save to Yahoo! bookmarks
not rated yet


January 22nd, 2007 all stories
Medicine & Health / Research

Comments: 0
Rank: not rated yet

  • Stumble this up

  • Digg this

  • Share it:
  • share on Facebook
  • share on MySpace
  • share on Slashdot
  • rss-newsfeed
  • share on Google
  • share on Reddit
  • add to delicious
  • save to Yahoo! bookmarks
  • share on Windows Live
  • Add to Mixx!
Rating: not rated yet

  • Related Stories

  • Mysteries of garlic are revealed
    created Aug 16, 2005 | popularity not rated yet | comments 0
  • A red-wine polyphenol demonstrates significant health benefits
    created Jun 12, 2009 | popularity not rated yet | comments 0
  • First compound for receptors in schizophrenia and Alzheimer's holds promise
    created Apr 20, 2009 | popularity not rated yet | comments 0
  • Colon cancer shuts down receptor that could shut it down
    created Apr 13, 2009 | popularity not rated yet | comments 0
  • Psychoactive compound activates mysterious receptor
    created Feb 12, 2009 | popularity not rated yet | comments 0

Tags


  • Physicists Demonstrate Quantum Memory with Matter Qubits
    Physicists Demonstrate Quantum Memory with Matter Qubits
    Physics / General Physics
    created Jul 03, 2009 | popularity 4.4 / 5 (17) | comments 1
  • 'Holey' Nanosheets for Wastewater Dye Removal
    Nanotechnology / Nanomaterials
    created Jul 01, 2009 | popularity 5 / 5 (5) | comments 1
  • Jellyfish Robot Swims Like its Biological Counterpart
    Jellyfish Robot Swims Like its Biological Counterpart
    Electronics / Robotics
    created Jun 26, 2009 | popularity 4.4 / 5 (8) | comments 1
  • Could Maxwell's Demon Exist in Nanoscale Systems?
    Could Maxwell's Demon Exist in Nanoscale Systems?
    Physics / General Physics
    created Jun 24, 2009 | popularity 4.4 / 5 (18) | comments 29
  • Living Safely with Robots, Beyond Asimov's Laws
    Living Safely with Robots, Beyond Asimov's Laws
    Electronics / Robotics
    created Jun 22, 2009 | popularity 4.6 / 5 (52) | comments 40
  • Other News

    Caffeine reverses memory impairment in Alzheimer's mice

    Caffeine reverses memory impairment in Alzheimer's mice

    Medicine & Health / Research

    created 21 minutes ago | popularity not rated yet | comments 0

    Coffee drinkers may have another reason to pour that extra cup. When aged mice bred to develop symptoms of Alzheimer's disease were given caffeine - the equivalent of five cups of coffee a day - their memory ...


    Researchers find possible environmental causes for Alzheimer's, diabetes

    Medicine & Health / Diseases

    created 23 minutes ago | popularity not rated yet | comments 0

    A new study by researchers at Rhode Island Hospital have found a substantial link between increased levels of nitrates in our environment and food with increased deaths from diseases, including Alzheimer's, diabetes mellitus ...


    Variations in 5 genes raise risk for most common brain tumors

    Medicine & Health / Genetics

    created 16 hours ago | popularity not rated yet | comments 1

    Common genetic variations spread across five genes raise a person's risk of developing the most frequent type of brain tumor, an international research team reports online in Nature Genetics.


    Researchers highlight new direction for drug discovery

    Medicine & Health / Research

    created 14 hours ago | popularity not rated yet | comments 0

    In a discovery that rebuffs conventional scientific thinking, researchers at Georgetown University Medical Center (GUMC) have discovered a novel way to block the activity of the fusion protein responsible for Ewing's sarcoma, ...


    Wind power may have its own environmental problems

    Medicine & Health / Health

    created 15 hours ago | popularity 3.7 / 5 (6) | comments 4

    Wind power generation is expected to be a clean and environmentally friendly natural energy source, but a new kind of environmental problem has surfaced as infrasonic waves caused by windmills are suspected of causing health ...