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Molecular basis of alternating access membrane transport by the sodium-hydantoin transporter Mhp1.


ABSTRACT: The structure of the sodium-benzylhydantoin transport protein Mhp1 from Microbacterium liquefaciens comprises a five-helix inverted repeat, which is widespread among secondary transporters. Here, we report the crystal structure of an inward-facing conformation of Mhp1 at 3.8 angstroms resolution, complementing its previously described structures in outward-facing and occluded states. From analyses of the three structures and molecular dynamics simulations, we propose a mechanism for the transport cycle in Mhp1. Switching from the outward- to the inward-facing state, to effect the inward release of sodium and benzylhydantoin, is primarily achieved by a rigid body movement of transmembrane helices 3, 4, 8, and 9 relative to the rest of the protein. This forms the basis of an alternating access mechanism applicable to many transporters of this emerging superfamily.

SUBMITTER: Shimamura T 

PROVIDER: S-EPMC2885435 | biostudies-literature | 2010 Apr

REPOSITORIES: biostudies-literature

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Molecular basis of alternating access membrane transport by the sodium-hydantoin transporter Mhp1.

Shimamura Tatsuro T   Weyand Simone S   Beckstein Oliver O   Rutherford Nicholas G NG   Hadden Jonathan M JM   Sharples David D   Sansom Mark S P MS   Iwata So S   Henderson Peter J F PJ   Cameron Alexander D AD  

Science (New York, N.Y.) 20100401 5977


The structure of the sodium-benzylhydantoin transport protein Mhp1 from Microbacterium liquefaciens comprises a five-helix inverted repeat, which is widespread among secondary transporters. Here, we report the crystal structure of an inward-facing conformation of Mhp1 at 3.8 angstroms resolution, complementing its previously described structures in outward-facing and occluded states. From analyses of the three structures and molecular dynamics simulations, we propose a mechanism for the transpor  ...[more]

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