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噬菌体展示技术用于膜蛋白的研究范围。

The scope of phage display for membrane proteins.

机构信息

Department of Molecular Biology and Biochemistry, University of California, Irvine, CA 92697, USA.

出版信息

J Mol Biol. 2011 Dec 9;414(4):499-510. doi: 10.1016/j.jmb.2011.10.021. Epub 2011 Oct 20.

Abstract

Numerous examples of phage display applied to soluble proteins demonstrate the power of the technique for protein engineering, affinity reagent discovery and structure-function studies. Recent reports have expanded phage display to include membrane proteins (MPs). The scope and limitations of MP display remain undefined. Therefore, we report data from the phage display of representative types of membrane-associated proteins including plasma, nuclear, peripheral, single and multipass. The peripheral MP neuromodulin displays robustly with packaging by conventional M13-KO7 helper phage. The monotopic MP Nogo-66 can also display on the phage surface, if packaged by the modified M13-KO7(+) helper phage. The modified phage coat of KO7(+) can better mimic the zwitterionic character of the plasma membrane. Four examples of putatively α-helical, integral MPs failed to express as fusions to an anchoring phage coat protein and therefore did not display on the phage surface. However, the β-barrel MPs ShuA (Shigella heme uptake A) and MOMP (major outer membrane protein), which pass through the membrane 22 and 16 times, respectively, can display surprisingly well on the surfaces of both conventional and KO7(+) phages. The results provide a guide for protein engineering and large-scale mutagenesis enabled by the phage display of MPs.

摘要

噬菌体展示技术已成功应用于可溶性蛋白,为蛋白质工程、亲和配体发现和结构-功能研究提供了有力工具。最近的报告已经将噬菌体展示技术扩展到了膜蛋白(MPs)。然而,MP 展示的范围和局限性仍未确定。因此,我们报告了代表性膜相关蛋白(包括质膜蛋白、核膜蛋白、外周膜蛋白、单次跨膜蛋白和多次跨膜蛋白)的噬菌体展示数据。外周膜蛋白神经调节素在传统 M13-KO7 辅助噬菌体的包装下能够强烈展示。如果用改良的 M13-KO7(+)辅助噬菌体包装,单跨膜蛋白 Nogo-66 也可以在噬菌体表面展示。KO7(+)改良噬菌体外壳可以更好地模拟质膜的两性离子特性。四个假定的α-螺旋、整合膜蛋白的例子未能融合到锚定噬菌体外壳蛋白上表达,因此不能在噬菌体表面展示。然而,β-桶状 MPs ShuA(志贺菌血红素摄取 A)和 MOMP(主要外膜蛋白),它们分别穿过膜 22 次和 16 次,令人惊讶的是,它们在传统和 KO7(+)噬菌体表面都能很好地展示。这些结果为 MPs 的噬菌体展示所实现的蛋白质工程和大规模诱变提供了指导。

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