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对来自sp. RC1的d-特异性脱卤酶对d-和l-2-氯丙酸酯的立体特异性的见解。

Insights into the stereospecificity of the d-specific dehalogenase from sp. RC1 toward d- and l-2-chloropropionate.

作者信息

Sudi Ismaila Yada, Hamid Azzmer Azzar Abdul, Shamsir Mohd Shahir, Jamaluddin Haryati, Wahab Roswanira Abdul, Huyop Fahrul

机构信息

Faculty of Biosciences and Medical Engineering (FBME), Universiti Teknologi Malaysia , Johor Bahru , Johor , Malaysia.

Faculty of Science, International Islamic University Malaysia , Kuantan , Pahang , Malaysia.

出版信息

Biotechnol Biotechnol Equip. 2014 Jul 4;28(4):608-615. doi: 10.1080/13102818.2014.937907. Epub 2014 Oct 23.

Abstract

Halogenated compounds are recalcitrant environmental pollutants prevalent in agricultural fields, waste waters and industrial by-products, but they can be degraded by dehalogenase-containing microbes. Notably, 2-haloalkanoic acid dehalogenases are employed to resolve optically active chloropropionates, as exemplified by the d-specific dehalogenase from sp. RCI (DehD), which acts on d-2-chloropropionate but not on its l-enantiomer. The catalytic residues of this dehalogenase responsible for its affinity toward d-2-chloropropionate have not been experimentally determined, although its three-dimensional crystal structure has been solved. For this study, we performed docking and molecular dynamic simulations of complexes formed by this dehalogenase and d- or l-2-chloropropionate. Arg134 of the enzyme plays the key role in the stereospecific binding and Arg16 is in a position that would allow it to activate a water molecule for hydrolytic attack on the d-2-chloropropionate chiral carbon for release of the halide ion to yield l-2-hydroxypropionate. We propose that within the DehD active site, the NH group of Arg134 can form a hydrogen bond with the carboxylate of d-2-chloropropionate with a strength of ∼4 kcal/mol that may act as an acid-base catalyst, whereas, when l-2-chloropropionate is present, this bond cannot be formed. The significance of the present work is vital for rational design of this dehalogenase in order to confirm the involvement of Arg16 and Arg134 residues implicated in hydrolysis and binding of d-2-chloropropionate in the active site of d-specific dehalogenase from sp. RC1.

摘要

卤代化合物是存在于农田、废水和工业副产品中的难降解环境污染物,但含脱卤酶的微生物可使其降解。值得注意的是,2-卤代链烷酸脱卤酶可用于拆分旋光性氯丙酸酯,例如来自sp. RCI的d-特异性脱卤酶(DehD),它作用于d-2-氯丙酸酯,而不作用于其l-对映体。尽管该脱卤酶的三维晶体结构已得到解析,但其负责对d-2-氯丙酸酯亲和力的催化残基尚未通过实验确定。在本研究中,我们对该脱卤酶与d-或l-2-氯丙酸酯形成的复合物进行了对接和分子动力学模拟。该酶的Arg134在立体特异性结合中起关键作用,而Arg16所处位置使其能够激活一个水分子,对d-2-氯丙酸酯的手性碳进行水解攻击,从而释放卤离子生成l-2-羟基丙酸酯。我们提出,在DehD活性位点内,Arg134的NH基团可与d-2-氯丙酸酯的羧酸盐形成强度约为4 kcal/mol的氢键,该氢键可能作为酸碱催化剂,而当存在l-2-氯丙酸酯时,则无法形成这种键。本研究对于合理设计该脱卤酶至关重要,以便确认参与来自sp. RC1的d-特异性脱卤酶活性位点中d-2-氯丙酸酯水解和结合的Arg16和Arg134残基的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1cb5/4684057/23043a628003/tbeq-28-608-g001.jpg

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