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卤代醇脱卤酶HheC催化的环氧化物开环反应对映选择性的结构基础。

Structural basis for the enantioselectivity of an epoxide ring opening reaction catalyzed by halo alcohol dehalogenase HheC.

作者信息

de Jong René M, Tiesinga Jan J W, Villa Alessandra, Tang Lixia, Janssen Dick B, Dijkstra Bauke W

机构信息

Department of Biophysical Chemistry, University of Groningen, Nijenborgh 4, NL-9747 AG Groningen, The Netherlands.

出版信息

J Am Chem Soc. 2005 Sep 28;127(38):13338-43. doi: 10.1021/ja0531733.

Abstract

Halo alcohol dehalogenase HheC catalyzes the highly enantioselective dehalogenation of vicinal halo alcohols to epoxides, as well as the reverse reaction, the enantioselective and beta-regioselective nucleophilic ring opening of epoxides by pseudo-halides such as azide and cyanide. To investigate this latter reaction, we determined X-ray structures of complexes of HheC with the favored and unfavored enantiomers of para-nitrostyrene oxide. The aromatic parts of the two enantiomers bind in a very similar way, but the epoxide ring of the unfavored (S)-enantiomer binds in a nonproductive inverted manner, with the epoxide oxygen and Cbeta atom positions interchanged with respect to those of the favored (R)-enantiomer. The calculated difference in relative Gibbs binding energy is in agreement with the observed loss of a single hydrogen bond in the S bound state with respect to the R bound state. Our results indicate that it is the nonproductive binding of the unfavored (S)-enantiomer, rather than the difference in affinity for the two enantiomers, that allows HheC to catalyze the azide-mediated ring opening of para-nitrostyrene oxide with high enantioselectivity. This work represents a rare opportunity to explain the enantioselectivity of an enzymatic reaction by comparison of crystallographic data on the binding of both the favored and unfavored enantiomers.

摘要

卤代醇脱卤酶HheC催化邻位卤代醇高度对映选择性地脱卤生成环氧化物,以及逆反应,即通过叠氮化物和氰化物等拟卤化物对环氧化物进行对映选择性和β-区域选择性亲核开环反应。为了研究后一种反应,我们测定了HheC与对硝基苯乙烯环氧化物的优势对映体和非优势对映体形成的复合物的X射线结构。两种对映体的芳香部分以非常相似的方式结合,但非优势(S)-对映体的环氧环以非有效反转的方式结合,环氧氧和Cβ原子的位置相对于优势(R)-对映体发生了互换。计算得到的相对吉布斯结合能差异与观察到的S结合态相对于R结合态单个氢键的损失一致。我们的结果表明,是非优势(S)-对映体的非有效结合,而不是对两种对映体亲和力的差异,使得HheC能够以高对映选择性催化叠氮化物介导的对硝基苯乙烯环氧化物开环反应。这项工作提供了一个难得的机会,通过比较优势对映体和非优势对映体结合的晶体学数据来解释酶促反应的对映选择性。

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