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与S-(对硝基苄基)谷胱甘肽及其他抑制剂复合的小鼠肝脏π类谷胱甘肽S-转移酶在1.8埃分辨率下的分子结构。

Molecular structure at 1.8 A of mouse liver class pi glutathione S-transferase complexed with S-(p-nitrobenzyl)glutathione and other inhibitors.

作者信息

García-Sáez I, Párraga A, Phillips M F, Mantle T J, Coll M

机构信息

Departament de Biologia Molecular i Cel.lular, Centre d'Investigació i Desenvolupament del CSIC, Barcelona, Spain.

出版信息

J Mol Biol. 1994 Apr 1;237(3):298-314. doi: 10.1006/jmbi.1994.1232.

Abstract

The three-dimensional crystal structure of pi class glutathione S-transferase YfYf from mouse liver complexed with the inhibitor S-(p-nitrobenzyl)glutathione has been determined at 1.8 A resolution by X-ray diffraction. In addition two complexes with glutathione sulphonic acid and S-hexylglutathione have been determined at resolutions of 1.9 and 2.2 A, respectively. The high resolution of the S-(p-nitrobenzyl)glutathione complex allows a detailed analysis of the active site including the hydrophobic (H-) subsite. The nitrobenzyl moiety occupies a hydrophobic pocket with its aromatic ring sandwiched between Phe8 and the hydroxyl group of Tyr108. An insertion of two residues Gly41 and Leu42, with respect to the pig enzyme, splits helix alpha B into an alpha-helix and a 3(10) helix. Water bridges between carbonyl oxygen atoms of the alpha-helix at its C terminus and the amide NH groups of the 3(10) helix at its N terminus provide structural continuity between these two secondary elements. Tyr7 appears to be the only residue close to the sulphur atom of glutathione, while three conserved water molecules lie in the surrounding area in all complexes. The enzyme mechanism is discussed on the basis of the structural analysis.

摘要

已通过X射线衍射在1.8埃分辨率下测定了来自小鼠肝脏的π类谷胱甘肽S-转移酶YfYf与抑制剂S-(对硝基苄基)谷胱甘肽复合的三维晶体结构。此外,还分别在1.9埃和2.2埃分辨率下测定了与谷胱甘肽磺酸和S-己基谷胱甘肽形成的两种复合物。S-(对硝基苄基)谷胱甘肽复合物的高分辨率使得能够对包括疏水(H-)亚位点在内的活性位点进行详细分析。硝基苄基部分占据一个疏水口袋,其芳香环夹在苯丙氨酸8和酪氨酸108的羟基之间。相对于猪酶,两个残基甘氨酸41和亮氨酸42的插入将αB螺旋分裂成一个α螺旋和一个3(10)螺旋。α螺旋C末端的羰基氧原子与3(10)螺旋N末端的酰胺NH基团之间的水桥提供了这两个二级结构单元之间的结构连续性。酪氨酸7似乎是靠近谷胱甘肽硫原子的唯一残基,而在所有复合物中,三个保守水分子位于周围区域。基于结构分析对酶的作用机制进行了讨论。

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