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The structure of an open form of an E. coli mechanosensitive channel at 3.45 A resolution.


ABSTRACT: How ion channels are gated to regulate ion flux in and out of cells is the subject of intense interest. The Escherichia coli mechanosensitive channel, MscS, opens to allow rapid ion efflux, relieving the turgor pressure that would otherwise destroy the cell. We present a 3.45 angstrom-resolution structure for the MscS channel in an open conformation. This structure has a pore diameter of approximately 13 angstroms created by substantial rotational rearrangement of the three transmembrane helices. The structure suggests a molecular mechanism that underlies MscS gating and its decay of conductivity during prolonged activation. Support for this mechanism is provided by single-channel analysis of mutants with altered gating characteristics.

SUBMITTER: Wang W 

PROVIDER: S-EPMC3299565 | biostudies-literature | 2008 Aug

REPOSITORIES: biostudies-literature

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The structure of an open form of an E. coli mechanosensitive channel at 3.45 A resolution.

Wang Wenjian W   Black Susan S SS   Edwards Michelle D MD   Miller Samantha S   Morrison Emma L EL   Bartlett Wendy W   Dong Changjiang C   Naismith James H JH   Booth Ian R IR  

Science (New York, N.Y.) 20080801 5893


How ion channels are gated to regulate ion flux in and out of cells is the subject of intense interest. The Escherichia coli mechanosensitive channel, MscS, opens to allow rapid ion efflux, relieving the turgor pressure that would otherwise destroy the cell. We present a 3.45 angstrom-resolution structure for the MscS channel in an open conformation. This structure has a pore diameter of approximately 13 angstroms created by substantial rotational rearrangement of the three transmembrane helices  ...[more]

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