Li Min, Hays Franklin A, Roe-Zurz Zygy, Vuong Linda, Kelly Libusha, Ho Chi-Min, Robbins Renée M, Pieper Ursula, O'Connell Joseph D, Miercke Larry J W, Giacomini Kathleen M, Sali Andrej, Stroud Robert M
Membrane Protein Expression Center, University of California at San Francisco, San Francisco, CA 94158-2517, USA.
J Mol Biol. 2009 Jan 23;385(3):820-30. doi: 10.1016/j.jmb.2008.11.021. Epub 2008 Nov 24.
A medium-throughput approach is used to rapidly identify membrane proteins from a eukaryotic organism that are most amenable to expression in amounts and quality adequate to support structure determination. The goal was to expand knowledge of new membrane protein structures based on proteome-wide coverage. In the first phase, membrane proteins from the budding yeast Saccharomyces cerevisiae were selected for homologous expression in S. cerevisiae, a system that can be adapted to expression of membrane proteins from other eukaryotes. We performed medium-scale expression and solubilization tests on 351 rationally selected membrane proteins from S. cerevisiae. These targets are inclusive of all annotated and unannotated membrane protein families within the organism's membrane proteome. Two hundred seventy-two targets were expressed, and of these, 234 solubilized in the detergent n-dodecyl-beta-D-maltopyranoside. Furthermore, we report the identity of a subset of targets that were purified to homogeneity to facilitate structure determinations. The extensibility of this approach is demonstrated with the expression of 10 human integral membrane proteins from the solute carrier superfamily. This discovery-oriented pipeline provides an efficient way to select proteins from particular membrane protein classes, families, or organisms that may be more suited to structure analysis than others.
一种中等通量的方法被用于从真核生物中快速鉴定出最适合以足够的量和质量进行表达以支持结构测定的膜蛋白。目标是基于全蛋白质组覆盖范围来扩展对新膜蛋白结构的认识。在第一阶段,选择来自酿酒酵母的膜蛋白在酿酒酵母中进行同源表达,该系统可适用于表达来自其他真核生物的膜蛋白。我们对从酿酒酵母中合理选择的351种膜蛋白进行了中等规模的表达和溶解测试。这些靶点包括该生物体膜蛋白质组内所有已注释和未注释的膜蛋白家族。272个靶点得到表达,其中234个在去污剂正十二烷基-β-D-麦芽糖苷中溶解。此外,我们报告了一部分被纯化至同质以促进结构测定的靶点的身份。通过溶质载体超家族的10种人类整合膜蛋白的表达证明了该方法的可扩展性。这种以发现为导向的流程提供了一种有效的方法,可从特定的膜蛋白类别、家族或生物体中选择可能比其他蛋白更适合结构分析的蛋白质。