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首页> 外文期刊>ACS catalysis >Amine Transaminase from Exophiala Xenobiotica-Crystal Structure and Engineering of a Fold IV Transaminase that Naturally Converts Biaryl Ketones
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Amine Transaminase from Exophiala Xenobiotica-Crystal Structure and Engineering of a Fold IV Transaminase that Naturally Converts Biaryl Ketones

机译:来自Exophiala Xenobiotica晶晶结构的胺转氨酶晶体结构和折叠IV转氨酶的工程,其天然转化前酮酮

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摘要

Amine transaminases are frequently used for the production of chiral amines starting from prochiral ketones. These amines can be applied as active pharmaceutical ingredients or drug precursors. However, there are still limitations to the use of amine transaminases when it comes to bulky ketone substrates, such as biaryl ketones. Using data mining, an (R)-selective amine transaminase from Exophiala xenobiotica was identified which naturally converts biaryl ketone substrates to the corresponding amines with up to 85% conversion and excellent enantioselectivity (99% ee). Its protein crystal structure was obtained with a resolution of 1.52 angstrom, which enabled us to explain this interesting substrate acceptance. Structure-guided protein engineering resulted in a quintuple variant with increased stability. Moreover, the amino acid exchange T273S increased the activity and broadened the substrate scope, enabling conversions of various biaryl ketones with up to 99%. A preparative biotransformation of 1-(4-(pyridin-3-yl)phenyl)ethenone at 75 mM (15 g/L) resulted in 96% of isolated yield of the respective amine.
机译:胺转氨酶经常用于从促胰酮开始的手性胺的产生。这些胺可以作为活性药物成分或药物前体应用。然而,当迄今为止酮酮底物(例如BiAriaryl酮)而言时,胺类转氨酶仍然存在限制。使用数据挖掘,鉴定了来自Exophiala Xenobiotica的(R)选择胺转氨酶,其自然地将丙酮酮底物转化为相应的胺,其转化率高和优异的对映射性(& 99%EE)。其蛋白质晶体结构以1.52埃的分辨率获得,使我们能够解释这种有趣的基材接受。结构引导的蛋白质工程导致Quintuple变体,稳定性增加。此外,氨基酸交换T273S增加了活性并拓宽了基材范围,使各种丙酮酮的转化为高达& 99%。在75mm(15g / L)的1-(4-(吡啶-3-基)苯基)乙烯的制备生物转化导致相应胺的96%的分离的产率。

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