一种推定的来自南极洲的等chorismatase水解酶的晶体结构。

Anna M Goral, Karolina L Tkaczuk, Maksymilian Chruszcz, Olga Kagan, Alexei Savchenko, Wladek Minor
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引用次数: 20

摘要

异chorismatase-like hydrolases (IHL)是一个大家族的酶,按SCOP分为5个结构家族。ihl对于铁载体介导的细胞获取铁至关重要。了解这些分子的结构特征将增强对铁转运分子基础的理解,并可能解决先前在文献中提出的机制中哪一个是正确的。本文测定了南极γ-变形菌Oleispira antarctica中一种推定的同染色质酶水解酶OaIHL (PDB代码:3LQY)的载脂蛋白形态的晶体结构,并对其最接近的同源物进行了序列比较和结构分析。对所有分析结构的特征特征进行了识别和讨论。我们还通过硅方法将等choris酸与确定的晶体结构对接,以突出活性中心与衬底的相互作用。假定的来自南极O. O. antarctica的异丙酸水解酶OaIHL具有典型的IHL蛋白催化三元组。它的活性中心类似于那些具有D-K-C催化三元组的IHLs,而不是那些具有D-K-X三元组的变体。OaIHL与IHL超家族的其他成员具有一些结构和序列特征。硅对接结果表明,尽管活性位点组成存在微小差异,但异氯酸盐与OaIHL结构的结合方式与非那嗪生物合成蛋白PhzD (PDB代码1NF8)的结合方式相似。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Crystal structure of a putative isochorismatase hydrolase from Oleispira antarctica.

Isochorismatase-like hydrolases (IHL) constitute a large family of enzymes divided into five structural families (by SCOP). IHLs are crucial for siderophore-mediated ferric iron acquisition by cells. Knowledge of the structural characteristics of these molecules will enhance the understanding of the molecular basis of iron transport, and perhaps resolve which of the mechanisms previously proposed in the literature is the correct one. We determined the crystal structure of the apo-form of a putative isochorismatase hydrolase OaIHL (PDB code: 3LQY) from the antarctic γ-proteobacterium Oleispira antarctica, and did comparative sequential and structural analysis of its closest homologs. The characteristic features of all analyzed structures were identified and discussed. We also docked isochorismate to the determined crystal structure by in silico methods, to highlight the interactions of the active center with the substrate. The putative isochorismate hydrolase OaIHL from O. antarctica possesses the typical catalytic triad for IHL proteins. Its active center resembles those IHLs with a D-K-C catalytic triad, rather than those variants with a D-K-X triad. OaIHL shares some structural and sequential features with other members of the IHL superfamily. In silico docking results showed that despite small differences in active site composition, isochorismate binds to in the structure of OaIHL in a similar mode to its binding in phenazine biosynthesis protein PhzD (PDB code 1NF8).

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