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土壤细菌来源的叶绿素酶 Cla1 的晶体结构

Crystal structure of ClA1, a type of chlorinase from soil bacteria.

机构信息

Department of Pathogen Biology, School of Basic Medicine, Tongji Medical College, Huazhong University of Science and Technology, 13 Hangkong Road, Wuhan, Hubei, 430030, China.

National Demonstration Center for Experimental Basic Medical Education (Huazhong University of Science and Technology), 13 Hangkong Road, Wuhan, Hubei, 430030, China.

出版信息

Biochem Biophys Res Commun. 2020 Sep 10;530(1):42-46. doi: 10.1016/j.bbrc.2020.06.129. Epub 2020 Jul 29.

Abstract

Halogenated compounds are widely discovered in nature, and many of them exhibit biological activities, such as an important chlorinated natural product salinosporamide A serving as a potential anticancer agent. Compared with bromination, iodination and fluorination, chlorination is the mainly important modification. To shed light on the mechanism of SAM-dependent chlorinases, a recombinant chlorinase ClA1 was expressed in Escherichia coli and further purified for crystallization and X-ray diffraction experiments. The flake crystals of ClA1 were able to diffract to a resolution of 1.85 Å. The crystals belonged to space group R3, with unit-cell parameters α = β = 90.0°, γ = 120.0°. By determining the structure of ClA1, it is revealed that the side chain of Arg242 in ClA1 may have contacts with the L-Met. However, in SalL the equivalent Arg243's side chain is far from L-Met. Considering the ClA1 and SalL are from different environments and their enzyme kinetics are quite different, it is suggested that the side chain conformation differences of the conserved arginine are possibly related with the enzyme activity differences of the two chlorinases.

摘要

卤代化合物在自然界中广泛存在,其中许多具有生物活性,例如作为潜在抗癌剂的重要氯化天然产物 Salinosporamide A。与溴化、碘化和氟化相比,氯化是主要的重要修饰。为了阐明 SAM 依赖性脱卤酶的机制,在大肠杆菌中表达了重组脱卤酶 ClA1,并进一步纯化用于结晶和 X 射线衍射实验。ClA1 的片状晶体能够衍射到 1.85 Å 的分辨率。晶体属于 R3 空间群,单元细胞参数 α = β = 90.0°,γ = 120.0°。通过确定 ClA1 的结构,揭示 ClA1 中的 Arg242 侧链可能与 L-Met 接触。然而,在 SalL 中,等效的 Arg243 的侧链远离 L-Met。考虑到 ClA1 和 SalL 来自不同的环境,它们的酶动力学非常不同,因此,保守精氨酸的侧链构象差异可能与两种脱卤酶的酶活性差异有关。

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