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芽孢杆菌RNA酶在1.5埃分辨率下的精细结构与结构分析

Refinement and structural analysis of barnase at 1.5 A resolution.

作者信息

Martin C, Richard V, Salem M, Hartley R, Mauguen Y

机构信息

Laboratoire de Physique, CNRS, ERS 582, Centre d'Etudes Pharmaceutiques, 92296 Châtenay-Malabry CEDEX, France.

出版信息

Acta Crystallogr D Biol Crystallogr. 1999 Feb;55(Pt 2):386-98. doi: 10.1107/s0907444998010865.

Abstract

The structure of Bacillus amyloliquefaciens ribonuclease (barnase), an extracellular 110-residue enzyme initially solved at 2.0 A resolution, has been refined at 1.5 A using synchrotron radiation and an imaging-plate scanner. Refinement with anisotropic atomic displacement parameters resulted in increased accuracy of the structure. The final model has a crystallographic R factor of 11.5% and an Rfree of 17.4%. The three independent molecules in the asymmetric unit, referred to as A, B and C, allowed detailed analysis of this final model and meaningful comparison with structures of barnase complexed either with nucleotide inhibitors or with its natural intracellular inhibitor, barstar. The analysis of the overall solvent structure revealed a similar number of water molecules associated with each barnase molecule; among these were 16 equivalent buried solvent molecules, the locations of which are discussed in detail and classified on the basis of their structural role. The importance of the water molecules' contribution to the barnase-barstar interaction is also highlighted. The high accuracy of the present analysis revealed the presence of a Zn2+ ion mediating the contacts between pairs of symmetry-related A, B or C molecules; such an ion had previously only been identified for pairs of C molecules.

摘要

解淀粉芽孢杆菌核糖核酸酶(barnase)是一种胞外酶,由110个氨基酸残基组成,其结构最初在2.0 Å分辨率下解析得到。利用同步辐射和成像板扫描仪,该结构已在1.5 Å分辨率下进行了精修。采用各向异性原子位移参数进行精修提高了结构的准确性。最终模型的晶体学R因子为11.5%,Rfree为17.4%。不对称单元中的三个独立分子,分别称为A、B和C,使得对该最终模型进行详细分析,并能与结合了核苷酸抑制剂或其天然细胞内抑制剂barstar的barnase结构进行有意义的比较。对整体溶剂结构的分析表明,与每个barnase分子结合的水分子数量相似;其中有16个等效的埋藏溶剂分子,详细讨论了它们的位置,并根据其结构作用进行了分类。还强调了水分子对barnase-barstar相互作用的贡献的重要性。本分析的高精度揭示了存在一个Zn2+离子介导对称相关的A、B或C分子对之间的接触;此前仅在C分子对中鉴定出这样的离子。

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