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二烯内酯水解酶在两种空间群中的结晶:晶体堆积引起的结构变化

Crystallization of dienelactone hydrolase in two space groups: structural changes caused by crystal packing.

作者信息

Porter Joanne L, Carr Paul D, Collyer Charles A, Ollis David L

机构信息

Research School of Chemistry, Australian National University, Building 137, Sullivans Creek Road, Canberra, ACT 0200, Australia.

School of Molecular Bioscience, University of Sydney, Biochemistry Building, Sydney, NSW 2006, Australia.

出版信息

Acta Crystallogr F Struct Biol Commun. 2014 Jul;70(Pt 7):884-9. doi: 10.1107/S2053230X1401108X. Epub 2014 Jun 18.

Abstract

Dienelactone hydrolase (DLH) is a monomeric protein with a simple α/β-hydrolase fold structure. It readily crystallizes in space group P2₁2₁2₁ from either a phosphate or ammonium sulfate precipitation buffer. Here, the structure of DLH at 1.85 Å resolution crystallized in space group C2 with two molecules in the asymmetric unit is reported. When crystallized in space group P2₁2₁2₁ DLH has either phosphates or sulfates bound to the protein in crucial locations, one of which is located in the active site, preventing substrate/inhibitor binding. Another is located on the surface of the enzyme coordinated by side chains from two different molecules. Crystallization in space group C2 from a sodium citrate buffer results in new crystallographic protein-protein interfaces. The protein backbone is highly similar, but new crystal contacts cause changes in side-chain orientations and in loop positioning. In regions not involved in crystal contacts, there is little change in backbone or side-chain configuration. The flexibility of surface loops and the adaptability of side chains are important factors enabling DLH to adapt and form different crystal lattices.

摘要

二氢内酯水解酶(DLH)是一种具有简单α/β水解酶折叠结构的单体蛋白。它很容易从磷酸盐或硫酸铵沉淀缓冲液中以空间群P2₁2₁2₁结晶。在此,报道了在空间群C2中结晶的分辨率为1.85 Å的DLH结构,其不对称单元中有两个分子。当在空间群P2₁2₁2₁中结晶时,DLH在关键位置有磷酸盐或硫酸盐与蛋白质结合,其中一个位于活性位点,阻止底物/抑制剂结合。另一个位于酶表面,由来自两个不同分子的侧链配位。从柠檬酸钠缓冲液中在空间群C2中结晶会产生新的晶体学蛋白质-蛋白质界面。蛋白质主链高度相似,但新的晶体接触会导致侧链方向和环定位的变化。在不参与晶体接触的区域,主链或侧链构型几乎没有变化。表面环的灵活性和侧链的适应性是使DLH能够适应并形成不同晶格的重要因素。

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