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通过连接蛋白的酵母展示对蛋白质进行简便的化学功能化。

Facile chemical functionalization of proteins through intein-linked yeast display.

机构信息

Department of Chemical and Biological Engineering , University of Wisconsin-Madison, 1415 Engineering Drive, Madison, Wisconsin 53706, United States.

出版信息

Bioconjug Chem. 2013 Sep 18;24(9):1634-44. doi: 10.1021/bc4002618. Epub 2013 Aug 22.

Abstract

Intein-mediated expressed protein ligation (EPL) permits the site-specific chemical customization of proteins. While traditional techniques have used purified, soluble proteins, we have extended these methods to release and modify intein fusion proteins expressed on the yeast surface, thereby eliminating the need for soluble protein expression and purification. To this end, we sought to simultaneously release yeast surface-displayed proteins and selectively conjugate with chemical functionalities compatible with EPL and click chemistry. Single-chain antibodies (scFv) and green fluorescent protein (GFP) were displayed on the yeast surface as fusions to the N-terminus of the Mxe GyrA intein. ScFv and GFP were released from the yeast surface with either a sulfur nucleophile (MESNA) or a nitrogen nucleophile (hydrazine) linked to an azido group. The hydrazine azide permitted the simultaneous release and azido functionalization of displayed proteins, but nonspecific reactions with other yeast proteins were detected, and cleavage efficiency was limited. In contrast, MESNA released significantly more protein from the yeast surface while also generating a unique thioester at the carboxy-terminus of the released protein. These protein thioesters were subsequently reacted with a cysteine alkyne in an EPL reaction and then employed in an azide-alkyne cycloaddition to immobilize the scFv and GFP on an azide-decorated surface with >90% site-specificity. Importantly, the immobilized proteins retained their activity. Since yeast surface display is also a protein engineering platform, these approaches provide a particularly powerful tool for the rapid assessment of engineered proteins.

摘要

内含肽介导的表达蛋白连接(EPL)允许蛋白质的特异性化学定制。虽然传统技术使用了纯化的可溶性蛋白质,但我们已经将这些方法扩展到释放和修饰在酵母表面表达的内含肽融合蛋白,从而消除了对可溶性蛋白表达和纯化的需求。为此,我们试图同时释放酵母表面展示的蛋白质,并选择性地与与 EPL 和点击化学兼容的化学官能团缀合。单链抗体 (scFv) 和绿色荧光蛋白 (GFP) 作为 Mxe GyrA 内含肽 N 端融合物在酵母表面上显示。 scFv 和 GFP 分别用硫亲核试剂 (MESNA) 或氮亲核试剂 (肼) 与叠氮基连接从酵母表面释放。肼叠氮化物允许同时释放和叠氮官能化显示的蛋白质,但检测到与其他酵母蛋白的非特异性反应,并且切割效率有限。相比之下,MESNA 从酵母表面释放出更多的蛋白质,同时在释放蛋白质的羧基末端生成独特的硫酯。这些蛋白质硫酯随后在 EPL 反应中与半胱氨酸炔烃反应,然后在叠氮化物-炔烃环加成反应中用于将 scFv 和 GFP 固定在叠氮化物修饰的表面上,特异性 >90%。重要的是,固定化蛋白质保留了它们的活性。由于酵母表面展示也是一种蛋白质工程平台,这些方法为快速评估工程化蛋白质提供了一个特别强大的工具。

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