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葡萄球菌核酸酶的晶体结构在1.7埃分辨率下得到优化。

The crystal structure of staphylococcal nuclease refined at 1.7 A resolution.

作者信息

Hynes T R, Fox R O

机构信息

Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, Connecticut 06511.

出版信息

Proteins. 1991;10(2):92-105. doi: 10.1002/prot.340100203.

Abstract

The crystal structure of staphylococcal nuclease has been determined to 1.7 A resolution with a final R-factor of 16.2% using stereochemically restrained Hendrickson-Konnert least-squares refinement. The structure reveals a number of conformational changes relative to the structure of the ternary complex of staphylococcal nuclease 1,2 bound with deoxythymidine-3',5'-diphosphate and Ca2+. Tyr-113 and Tyr-115, which pack against the nucleotide base in the nuclease complex, are rotated outward creating a more open binding pocket in the absence of nucleotide. The side chains of Ca2+ ligands Asp-21 and Asp-40 shift as does Glu-43, the proposed general base in the hydrolysis of the 5'-phosphodiester bond. The significance of some changes in the catalytic site is uncertain due to the intrusion of a symmetry related Lys-70 side chain which hydrogen bonds to both Asp-21 and Glu-43. The position of a flexible loop centered around residue 50 is altered, most likely due to conformational changes propagated from the Ca2+ site. The side chains of Arg-35, Lys-84, Tyr-85, and Arg-87, which hydrogen bond to the 3'- and 5'-phosphates of the nucleotide in the nuclease complex, are unchanged in conformation, with packing interactions with adjacent protein side chains sufficient to fix the geometry in the absence of ligand. The nuclease structure presented here, in combination with the stereochemically restrained refinement of the nuclease complex structure at 1.65 A, provides a wealth of structural information for the increasing number of studies using staphylococcal nuclease as a model system of protein structure and function.

摘要

利用立体化学约束的亨德里克森 - 科纳特最小二乘法精修,已将葡萄球菌核酸酶的晶体结构解析到1.7 Å分辨率,最终R因子为16.2%。该结构揭示了相对于与脱氧胸苷 - 3',5'-二磷酸和Ca2+结合的葡萄球菌核酸酶1,2三元复合物结构的一些构象变化。在核酸酶复合物中靠在核苷酸碱基上的Tyr-113和Tyr-115向外旋转,在没有核苷酸的情况下形成了一个更开放的结合口袋。Ca2+配体Asp-21和Asp-40的侧链以及5'-磷酸二酯键水解中假定的通用碱Glu-43都发生了移动。由于一个与对称相关的Lys-70侧链的侵入,其与Asp-21和Glu-43都形成氢键,催化位点中一些变化的意义尚不确定。以残基50为中心的柔性环的位置发生了改变,最有可能是由于从Ca2+位点传播的构象变化。在核酸酶复合物中与核苷酸的3'-和5'-磷酸形成氢键的Arg-35、Lys-84、Tyr-85和Arg-87的侧链构象不变,在没有配体的情况下与相邻蛋白质侧链的堆积相互作用足以固定几何结构。这里呈现的核酸酶结构,与在1.65 Å分辨率下对核酸酶复合物结构进行的立体化学约束精修相结合,为越来越多将葡萄球菌核酸酶用作蛋白质结构和功能模型系统的研究提供了丰富的结构信息。

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