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通过表达性蛋白质连接进行蛋白质工程。

Protein engineering by expressed protein ligation.

作者信息

Blaschke U K, Silberstein J, Muir T W

机构信息

Laboratory of Synthetic Protein Chemistry, Rockefeller University, New York, New York 10021, USA.

出版信息

Methods Enzymol. 2000;328:478-96. doi: 10.1016/s0076-6879(00)28414-0.

Abstract

By allowing the controlled assembly of synthetic peptides and recombinant polypeptides, expressed protein ligation permits unnatural amino acids, biochemical probes, and biophysical probes to be specifically incorporated into semisynthetic proteins. A powerful feature of the method is its modularity; once the reactive recombinant pieces are in hand and the optimal ligation conditions have been developed, it is possible to quickly generate an array of semisynthetic analogs by simply attaching different synthetic peptide cassettes--in most cases the synthetic peptides will be small and easy to make. From a practical perspective, the rate-determining step in the process is usually not the ligation step (it is based on a simple and efficient chemical reaction), but rather the generation of the reactive polypeptide building blocks. In particular, optimizing the yields of recombinant polypeptide building blocks can require some initial effort. However, it should be noted that the initial investment in time required to optimize the production of the recombinant fragment is offset by the ease and speed with which one can produce the material thereafter. In the example described in this chapter, the yield of soluble intein fusion protein was slightly better using the GyrA intein than for the VMA intein, although in both cases significant amounts of fusion protein were present in the cell pellet. Studies are currently underway to identify optimal refolding conditions for GyrA fusion proteins solubilized from inclusion bodies.

摘要

通过允许合成肽和重组多肽的可控组装,表达蛋白连接技术可使非天然氨基酸、生化探针和生物物理探针特异性地掺入半合成蛋白质中。该方法的一个强大特性是其模块化;一旦获得了反应性重组片段并开发出最佳连接条件,只需连接不同的合成肽盒,就可以快速生成一系列半合成类似物——在大多数情况下,合成肽体积小且易于制备。从实际角度来看,该过程的限速步骤通常不是连接步骤(它基于简单高效的化学反应),而是反应性多肽构建块的生成。特别是,优化重组多肽构建块的产量可能需要一些前期工作。然而,应该注意的是,优化重组片段生产所需的前期时间投入,会被后续生产该材料的简便性和速度所抵消。在本章所述的例子中,使用GyrA内含肽时可溶性内含肽融合蛋白的产量略高于VMA内含肽,尽管在两种情况下细胞沉淀中都存在大量融合蛋白。目前正在进行研究,以确定从包涵体中溶解的GyrA融合蛋白的最佳复性条件。

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