New insights into the enzymatic mechanism of human chitotriosidase (CHIT1) catalytic domain by atomic resolution X-ray diffraction and hybrid QM/MM.

Firas Fadel, Yuguang Zhao, Raul Cachau, Alexandra Cousido-Siah, Francesc X Ruiz, Karl Harlos, Eduardo Howard, Andre Mitschler, Alberto Podjarny
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引用次数: 20

Abstract

Chitotriosidase (CHIT1) is a human chitinase belonging to the highly conserved glycosyl hydrolase family 18 (GH18). GH18 enzymes hydrolyze chitin, an N-acetylglucosamine polymer synthesized by lower organisms for structural purposes. Recently, CHIT1 has attracted attention owing to its upregulation in immune-system disorders and as a marker of Gaucher disease. The 39 kDa catalytic domain shows a conserved cluster of three acidic residues, Glu140, Asp138 and Asp136, involved in the hydrolysis reaction. Under an excess concentration of substrate, CHIT1 and other homologues perform an additional activity, transglycosylation. To understand the catalytic mechanism of GH18 chitinases and the dual enzymatic activity, the structure and mechanism of CHIT1 were analyzed in detail. The resolution of the crystals of the catalytic domain was improved from 1.65 Å (PDB entry 1waw) to 0.95-1.10 Å for the apo and pseudo-apo forms and the complex with chitobiose, allowing the determination of the protonation states within the active site. This information was extended by hybrid quantum mechanics/molecular mechanics (QM/MM) calculations. The results suggest a new mechanism involving changes in the conformation and protonation state of the catalytic triad, as well as a new role for Tyr27, providing new insights into the hydrolysis and transglycosylation activities.

原子分辨x射线衍射和混合QM/MM对人壳三酸苷酶(CHIT1)催化结构域酶促机制的新认识。
CHIT1是一种人类几丁质酶,属于高度保守的糖基水解酶家族18 (GH18)。GH18酶水解几丁质,一种由低等生物合成的n -乙酰氨基葡萄糖聚合物。近年来,CHIT1因其在免疫系统紊乱中的上调和作为戈谢病的标志物而引起了人们的关注。39 kDa的催化结构域显示了一个保守的三个酸性残基簇,Glu140, Asp138和Asp136参与了水解反应。在过量的底物浓度下,CHIT1和其他同源物执行额外的活性,转糖基化。为了解GH18几丁质酶的催化机理和双酶活性,对CHIT1的结构和作用机理进行了详细分析。催化域晶体的分辨率从1.65 Å (PDB入口1waw)提高到0.95-1.10 Å(载脂蛋白和伪载脂蛋白形式以及壳聚糖配合物),从而可以确定活性位点内的质子化状态。该信息通过混合量子力学/分子力学(QM/MM)计算得到扩展。这些结果提示了一个涉及催化三联体构象和质子化状态变化的新机制,以及Tyr27的新作用,为水解和转糖基化活性提供了新的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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