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The 3-ketoacyl-CoA thiolase: an engineered enzyme for carbon chain elongation of chemical compounds

机译:3-酮酰基-COA硫醇酶:化学化合物的碳链伸长的工程酶

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摘要

Because of their function of catalyzing the rearrangement of the carbon chains, thiolases have attracted increasing attentions over the past decades. The 3-ketoacyl-CoA thiolase (KAT) is a member of the thiolase, which is capable of catalyzing the Claisen condensation reaction between the two acyl-CoAs, thereby achieving carbon chain elongation. In this way, diverse value-added compounds might be synthesized starting from simple small CoA thioesters. However, most KATs are hampered by low stability and poor substrate specificity, which has hindered the development of large-scale biosynthesis. In this review, the common characteristics in the three-dimensional structure of KATs from different sources are summarized. Moreover, structure-guided rational engineering is discussed as a strategy for enhancing the performance of KATs. Finally, we reviewed the metabolic engineering applications of KATs for producing various energy-storage molecules, such asn-butanol, fatty acids, dicarboxylic acids, and polyhydroxyalkanoates.
机译:由于它们催化碳链重排的功能,硫胺酶在过去几十年中引起了越来越多的关注。 3-酮酰基-COA硫基酶(KAT)是硫醇酶的成员,其能够催化两个酰基 - 咖啡酰基之间的Claisen缩合反应,从而达到碳链伸长率。以这种方式,可以从简单的小COA硫代酯开始合成不同的增值化合物。然而,大多数KAT受到低稳定性和底物特异性差的阻碍,这阻碍了大规模生物合成的发展。在本文中,总结了来自不同来源的KAT三维结构的共同特征。此外,结构引导的理性工程作为提高KATS性能的策略。最后,我们审查了KATS的代谢工程应用,用于生产各种能量储存分子,如丁醇,脂肪酸,二羧酸和多羟基烷酸盐。

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