[[Skip Header and Navigation] [Jump to Main Content]
« עברית
  • Home
  • News
    • Press Releases
    • In the News
    • Subscribe to Press Releases
    • Honors and Awards
    • Visits
    • Events

    Press Releases

    16 May 2013
    Weather on the Outer Planets Only Goes So Deep
    18 Apr 2013
    Neural Activity in Bats Measured In Flight
    18 Mar 2013
    Programmed Destruction

    More »

    Research Highlights

    GeneCards
    Noncoding Sequences Get Equal Listing

    A greatly expanded database will give scientists around the world a powerful new tool for life sciences research

    gut cells
    The Spies Inside

    How does the immune system in the gut distinguish between helpful microbes and those that wish us harm?

    Ron Diskin
    Mutations Trump Invasion

    The process of HIV infection is just one of the subjects protein researcher Dr. Ron Diskin is investigating in his new lab

    More »

    Honors & Awards

    Dr. Zohar Komargodski has been awarded the Gribov Medal by the EPS High Energy Particle Physics Division Prizes
    More »

    Full list »

    |
    | | | | | |
    |
  • Research
    • By Subject
    • What We Are Doing About:
    • From Basic Research to Benefiting Humanity
    • Shaping the Future

    By Subject

    Alternative Energy Materials Science
    Astrophysics Mathematics
    Biochemistry  Molecular Cell Biology
    Bioinformatics Nanoscience
    Biomedical Biology Neuroscience
    Cancer Particle Physics
    Chemistry Physics
    Computer Science Plant Sciences
    Environment Quantum Physics
    Evolution Scientific Archaeology
    Genetics Structural Biology

    What We Are Doing About:

    • Cancer
    • Diabetes
    • The Environment
    • Nanoscience
    • Energy

    Benefiting Humanity

    Prof. Amos Breskin
    Prof. Amos Breskin develops advanced radiation detectors, which have an important impact on many fields of research, such as particle, nuclear and atomic physics, medical diagnostics, biology and materials science.
     
    Application

    More »

    Full list »

    |
    | | | | | |
    |
  • Magazines and Multimedia
    • Annual Report
    • Interface - Online Magazine
    • The Weizmann International Magazine of Science and People
    • Books
    • Nano Comics
    • Galleries
    • Horizons - Online Magazine
    Annual Report 2012
    The 2012 Report
    Annual Report 2012
    2012 and Beyond
    Research Highlights
    New Developments
    Technology Transfer
    Summary of Operating Results
    More »

    Magazines

    Current Issue: Spring 2013
    Interface magazine Spring 2013
    Magazine Sections
    Science Feature Articles
    Made at the Institute
    Time Tunnel

    Archive »

    Latest Videos

    CRASH
    The Race for the Higgs Boson
    • Monitoring Carbon Exchange
    • Thanks for the Memories
    • Quantum Computing
    • Back to Basics - Forward to the Future
    More »
    |
    | | | | | |
    |
  • About the Institute
    • Overview
    • History
    • Virtual Tour
    • Visiting the Institute

    Overview

    • Multidisciplinary Research
    • Facts and Figures
    • Pioneering Progress
    • Training Future Scientists
    • Science is for Sharing
    • Advancing Israel
    • New Horizons
    • Beauty in Science

    History

    Dr. Chaim Weizmann

    Chaim Weizmann was born in 1874 to a traditional Jewish family in the small town of Motol in White Russia (Belarus). After graduating with honors from the Real-Gymnasium in Pinsk, he decided to establish himself professionally

    More »
    Weizmann House
    • History and Architecture
    • The Collection
    • The Tour
    • The Garden
    • The Grave
    • Erich Mendelsohn
    • The Presidential Car Vintage Wheels

    Visiting the Institute


    • Visitors Center
    • Weizmann House
    • Clore Garden of Science
    |
    | | | | | |
    |
  • Weizmann Institute Homepage
Home » Press Room » Press Releases
News
  • Press Releases
    • English
    • Hebrew
    • Spanish
    • French
    • German
  • In the News
  • Subscribe to Press Releases
  • Honors and Awards
  • Visits
  • Events

twitter block

 

Follow @WeizmannScience

Complex Channels

23 Jan
2007
Biochemistry
Weizmann Institute scientists discover how ion channels are organized to effectively control nerve cell communication
 

The messages passed in a neuronal network can target something like 100 billion nerve cells in the brain alone. These, in turn communicate with millions of other cells and organs in the body. How, then, do whole cascades of events trigger responses that are highly specific, quick and precisely timed? A team at the Weizmann Institute of Science has now shed light on this mysterious mechanism. Their discovery could have important implications for the future development of drugs for epilepsy and other nervous system diseases. These findings were recently published in the journal Neuron.

 

The secret is in the control over electrical signals generated by cells. These signals depend on ion channels – membrane proteins found in excitable cells, such as nerve cells – that allow them to generate electrical signals, depending on whether the channels are opened or closed. Prof. Eitan Reuveny, together with Ph.D. students Inbal Riven and Shachar Iwanir of the Weizmann Institute’s Biological Chemistry Department, studied channels that work on potassium ions and are coupled to a protein called the G protein, which when activated, causes the channel to open. Opening the channel inhibits the conductance of electrical signals, a fact that might be relevant, for example, in the control of seizures.

 

The G protein itself is activated by another protein, a receptor, which gets its cue to carry out its task from chemical messengers known as neurotransmitters. But neurotransmitters are general messengers – they can inhibit as well as excite, and the receptors can respond to either message. How, the scientists wanted to know, is the G protein targeted so quickly and precisely to activate the channel?

 

Reuveny and his team found that the receptor and G protein are physically bound together in a complex, allowing the process to be finely tuned. When the receptor receives a chemical message from the neurotransmitter, it is already hooked up to the correct G protein. After being activated by the receptor, the G protein changes shape, opening the ion channel. The evidence for this complex structure came from special technique called FRET (Fluorescence Resonance Energy Transfer) that can measure the distance between two molecules. The scientists observed that even without stimulation, there is a lot of energy transfer between the G protein and the potassium channel, suggesting that they are very close together.

 

Mutations in ion channels are likely to be involved in epilepsy, chronic pain, neurodegenerative diseases and muscular diseases, and ion channels are the target of many drugs. Understanding the basic biological phenomena behind the way proteins organize themselves and orchestrate biological processes may allow scientists to design better or more efficient drugs.  
  
Prof. Eitan Reuveny’s research is supported by the Y. Leon Benoziyo Institute for Molecular Medicine; the Clore Center for Biological Physics; and the Dr. Josef Cohn Minerva Center for Biomembrane Research.

Tags:
  • Biochemistry,
  • Eitan Reuveny,
  • Ion channel,
  • Neuron,
  • Neurotransmitter,
  • ""
  • Print this page »

Search Press Releases

Related Articles

Imaging Method Reveals Remarkable 'Architecture' of the Working Brain
New Understanding Of A Key Control Mechanism In The Brain
Working Artificial Nerve Networks
Filters of the Mind
More Related links »
Crystals
Crystals
Edit block | Delete block

Edit block | Delete block

Download our FREE Interface Magazine App for iPad and Android

Secondary Links

  • Contact Us
  • Visit Us
  • How to Get Here
  • Campus Map
  • Site Map
  • Privacy
  • Terms of Use
  • Supporting Committees
  • Credits

Get RSS
© Weizmann Institute of Science 2012. All rights reserved
Follow us on:
[Jump to Top] [Jump to Main Content]