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Ratiocinative screen of eukaryotic integral membrane protein expression and solubilization for structure determination.


ABSTRACT: Persistent hurdles impede the successful determination of high-resolution crystal structures of eukaryotic integral membrane proteins (IMP). We designed a high-throughput structural genomics oriented pipeline that seeks to minimize effort in uncovering high-quality, responsive non-redundant targets for crystallization. This "discovery-oriented" pipeline sidesteps two significant bottlenecks in the IMP structure determination pipeline: expression and membrane extraction with detergent. In addition, proteins that enter the pipeline are then rapidly vetted by their presence in the included volume on a size-exclusion column--a hallmark of well-behaved IMP targets. A screen of 384 rationally selected eukaryotic IMPs in baker's yeast Saccharomyces cerevisiae is outlined to demonstrate the results expected when applying this discovery-oriented pipeline to whole-organism membrane proteomes.

SUBMITTER: Hays FA 

PROVIDER: S-EPMC2756966 | biostudies-literature | 2009 Mar

REPOSITORIES: biostudies-literature

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Ratiocinative screen of eukaryotic integral membrane protein expression and solubilization for structure determination.

Hays Franklin A FA   Roe-Zurz Zygy Z   Li Min M   Kelly Libusha L   Gruswitz Franz F   Sali Andrej A   Stroud Robert M RM  

Journal of structural and functional genomics 20081122 1


Persistent hurdles impede the successful determination of high-resolution crystal structures of eukaryotic integral membrane proteins (IMP). We designed a high-throughput structural genomics oriented pipeline that seeks to minimize effort in uncovering high-quality, responsive non-redundant targets for crystallization. This "discovery-oriented" pipeline sidesteps two significant bottlenecks in the IMP structure determination pipeline: expression and membrane extraction with detergent. In additio  ...[more]

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