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Directed evolution of enzyme stability

机译:酶稳定性的定向进化

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Modern enzyme development relies to an increasing extent on strategies based on diversity generation followed by screening for variants, with optimised properties. In principle, these directed evolution strategies might be used for optimising any enzyme property, which can be screened for in an economically feasible way, even if the molecular basis of that property is not known. Stability is an interesting property of enzymes because (1) it is of great industrial importance, (2) it is relatively easy to screen for, and (3) the molecular basis of stability relates closely to contemporary issues in protein science such as the protein folding problem and protein folding diseases. Thus, engineering enzymes stability is of both commercial and scientific interest.Here, we review how directed evolution has contributed to the development of stable enzymes and to new insight into the principles of protein stability. Several recent examples are described. These examples show that directed evolution is an effective strategy to obtain stable enzymes, especially when used in combination with rational or semi-rational engineering strategies. With respect to the principles of protein. stability, some important lessons to learn from recent efforts in directed evolution are (1) that there are many structural ways to stabilize. protein, which are not always easy to rationalize, (2) that proteins may very well be stabilized by optimizing their surfaces, and (3) that high thermal stability may be obtained without forfeiture of catalytic performance at low temperatures. (C) 2005 Elsevier B.V All rights reserved.
机译:现代酶的开发越来越依赖于基于多样性产生,随后筛选具有优化特性的变体的策略。原则上,这些定向进化策略可用于优化任何酶的性质,即使该性质的分子基础未知,也可以以经济可行的方式对其进行筛选。稳定性是酶的一个有趣特性,因为(1)它在工业上具有重要的意义,(2)它相对容易筛选,并且(3)稳定性的分子基础与蛋白质科学中的当代问题密切相关,例如蛋白质折叠问题和蛋白质折叠疾病。因此,工程化酶的稳定性既具有商业意义,也具有科学意义。在这里,我们回顾了定向进化如何促进稳定酶的发展以及对蛋白质稳定性原理的新见解。描述了几个最近的例子。这些例子表明,定向进化是获得稳定酶的有效策略,尤其是与合理或半理性的工程策略结合使用时。关于蛋白质原理。稳定性,从最近的定向进化研究中可以吸取的重要教训是(1)有许多结构上的稳定方法。蛋白质,这种蛋白质并不总是很容易合理化;(2)通过优化蛋白质的表面可以很好地稳定蛋白质;(3)在不丧失低温催化性能的情况下,可以获得很高的热稳定性。 (C)2005 Elsevier B.V保留所有权利。

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