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工程策略克服蛋白质稳定性-功能权衡。

Engineering Strategies to Overcome the Stability-Function Trade-Off in Proteins.

机构信息

Department of Chemistry, Institute of Biochemistry, University of Natural Resources and Life Sciences, 1190 Vienna, Austria.

CD Laboratory for Next Generation CAR T Cells, 1190 Vienna, Austria.

出版信息

ACS Synth Biol. 2022 Mar 18;11(3):1030-1039. doi: 10.1021/acssynbio.1c00512. Epub 2022 Mar 8.

Abstract

In addition to its biological function, the stability of a protein is a major determinant for its applicability. Unfortunately, engineering proteins for improved functionality usually results in destabilization of the protein. This so-called stability-function trade-off can be explained by the simple fact that the generation of a novel protein function─or the improvement of an existing one─necessitates the insertion of mutations, , deviations from the evolutionarily optimized wild-type sequence. In fact, it was demonstrated that gain-of-function mutations are not more destabilizing than other random mutations. The stability-function trade-off is a universal phenomenon during protein evolution that has been observed with completely different types of proteins, including enzymes, antibodies, and engineered binding scaffolds. In this review, we discuss three types of strategies that have been successfully deployed to overcome this omnipresent obstacle in protein engineering approaches: (i) using highly stable parental proteins, (ii) minimizing the extent of destabilization during functional engineering (by library optimization and/or coselection for stability and function), and (iii) repairing damaged mutants through stability engineering. The implementation of these strategies in protein engineering campaigns will facilitate the efficient generation of protein variants that are not only functional but also stable and therefore better-suited for subsequent applications.

摘要

除了其生物学功能外,蛋白质的稳定性也是其适用性的主要决定因素。不幸的是,为了提高蛋白质的功能而对其进行工程改造通常会导致蛋白质的不稳定性。这种所谓的稳定性-功能权衡可以用一个简单的事实来解释,即产生新的蛋白质功能(或改善现有的功能)需要插入突变,即偏离进化优化的野生型序列的偏差。事实上,已经证明功能获得性突变并不比其他随机突变更具不稳定性。在蛋白质进化过程中,稳定性-功能权衡是一种普遍现象,已经在完全不同类型的蛋白质中观察到,包括酶、抗体和工程结合支架。在这篇综述中,我们讨论了三种已经成功应用于克服蛋白质工程方法中这一普遍障碍的策略:(i)使用高度稳定的亲本蛋白质,(ii)在功能工程过程中最小化失稳程度(通过文库优化和/或稳定性和功能的共选择),以及(iii)通过稳定性工程修复受损突变体。在蛋白质工程研究中实施这些策略将有助于高效产生不仅具有功能而且稳定的蛋白质变体,从而更适合后续应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5884/8938945/b0bdb0889d43/sb1c00512_0001.jpg

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