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巴西橡胶树羟基腈裂解酶对映体选择性的结构决定因素。

Structural determinants of the enantioselectivity of the hydroxynitrile lyase from Hevea brasiliensis.

作者信息

Gartler Günter, Kratky Christoph, Gruber Karl

机构信息

Institute of Chemistry, University of Graz, Heinrichstrasse 28, A-8010 Graz, Austria.

出版信息

J Biotechnol. 2007 Mar 30;129(1):87-97. doi: 10.1016/j.jbiotec.2006.12.009. Epub 2006 Dec 17.

Abstract

The hydroxynitrile lyase from the tropical rubber tree Hevea brasiliensis (HbHNL) is utilized as a biocatalyst in stereospecific syntheses of alpha-hydroxynitriles from aldehydes and methyl-ketones. The catalyzed reaction represents one of the few industrially relevant examples of enzyme mediated C-C coupling reactions. In this work, we determined the X-ray crystal structures (at 1.54 and 1.76 Angstroms resolution) of HbHNL complexes with two chiral substrates -- mandelonitrile and 2,3-dimethyl-2-hydroxy-butyronitrile -- by soaking and rapid freeze quenching techniques. This is the first structural observation of the complex between a HNL and chiral substrates. Consistent with the known selectivity of the enzyme, only the S-enantiomers of the two substrates were observed in the active site. The binding modes of the chiral substrates were identical to that observed for the biological substrate acetone cyanohydrin. This indicates that the transformation of these non-natural substrates follows the same mechanism. A large hydrophobic pocket was identified in the active site of HbHNL which accommodates the more voluminous substituents of the two substrates. A three-point binding mode of the substrates -- hydrophobic pocket, hydrogen bonds between the hydroxyl group and Ser80 and Thr11, electrostatic interaction of the cyano group with Lys236 -- offers a likely structural explanation for the enantioselectivity of the enzyme. The structural data rationalize the observed (S)-enantioselectivity and form the basis for modifying the stereospecificity through rational design. The structures also revealed the necessity of considerable flexibility of the sidechain of Trp128 in order to bind and transform larger substrates.

摘要

来自热带橡胶树巴西橡胶树(HbHNL)的羟基腈裂解酶被用作生物催化剂,用于从醛和甲基酮立体选择性合成α-羟基腈。催化反应是酶介导的C-C偶联反应中少数与工业相关的例子之一。在这项工作中,我们通过浸泡和快速冷冻淬灭技术,确定了HbHNL与两种手性底物——扁桃腈和2,3-二甲基-2-羟基丁腈——形成的复合物的X射线晶体结构(分辨率分别为1.54和1.76埃)。这是首次对HNL与手性底物之间的复合物进行结构观察。与该酶已知的选择性一致,在活性位点仅观察到两种底物的S-对映体。手性底物的结合模式与生物底物丙酮氰醇的观察结果相同。这表明这些非天然底物的转化遵循相同的机制。在HbHNL的活性位点发现了一个大的疏水口袋,可容纳两种底物中体积更大的取代基。底物的三点结合模式——疏水口袋、羟基与Ser80和Thr11之间的氢键、氰基与Lys236的静电相互作用——为该酶的对映选择性提供了一种可能的结构解释。结构数据解释了观察到的(S)-对映选择性,并为通过合理设计改变立体特异性奠定了基础。这些结构还揭示了Trp128侧链具有相当大的灵活性对于结合和转化更大底物的必要性。

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