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克氏锥虫三硫键还原酶在氧化态和NADPH还原态下的结构。

The structure of Trypanosoma cruzi trypanothione reductase in the oxidized and NADPH reduced state.

作者信息

Lantwin C B, Schlichting I, Kabsch W, Pai E F, Krauth-Siegel R L

机构信息

Abteilung Biophysik, Max-Planck-Institut für Medizinische Forschung, Heidelberg, Germany.

出版信息

Proteins. 1994 Feb;18(2):161-73. doi: 10.1002/prot.340180208.

Abstract

The three-dimensional structure of trypanothione reductase (TR) (EC 1.6.4.8) from Trypanosoma cruzi has been solved at 0.33 nm resolution by molecular replacement using the structure of C. fasciculata TR as a starting model. Elucidation of the T. cruzi TR structure represents the first step in the rational design of a drug against Chagas' disease. The structure of T. cruzi TR is compared with those of C. fasciculata TR as well as human and E. coli glutathione reductase (GR). In the FAD-binding domain, TR has two insertions, each about 10 residues long, which do not occur in GR. The first one is a rigid loop stabilizing the position of helix 91-117 which is responsible for the wider active site of TR as compared to GR. The second insertion does not occur where it is predicted by sequence alignment; rather the residues extend three strands of the 4-stranded beta-sheet by one or two residues each. This increases the number of hydrogen bonds within the sheet structure. The structure of the NADPH.TR complex has been solved at 0.33 nm resolution. The nicotinamide ring is sandwiched between the flavin ring and the side chain of Phe-198 which undergoes the same conformational change upon coenzyme binding as Tyr-197 in GR. In addition to Arg-222 and Arg-228, which are conserved in TR and GR, Tyr-221--the last residue of the second beta-sheet strand of the beta alpha beta dinucleotide binding fold--is in hydrogen bonding distance to the 2' phosphate group of NADPH.

摘要

利用克氏锥虫锥虫硫醇还原酶(TR)(EC 1.6.4.8)的三维结构,以C. fasciculata TR的结构为起始模型,通过分子置换法在0.33nm分辨率下得到了解析。阐明克氏锥虫TR结构是针对恰加斯病进行药物合理设计的第一步。将克氏锥虫TR的结构与C. fasciculata TR以及人和大肠杆菌谷胱甘肽还原酶(GR)的结构进行了比较。在FAD结合结构域中,TR有两个插入片段,每个约10个残基长,这在GR中不存在。第一个是一个刚性环,稳定了91 - 117螺旋的位置,该螺旋导致TR的活性位点比GR更宽。第二个插入片段的位置并非序列比对预测的位置;相反,这些残基将4股β - 折叠中的3股各自延伸了1或2个残基。这增加了β - 折叠结构内的氢键数量。NADPH.TR复合物的结构已在0.33nm分辨率下得到解析。烟酰胺环夹在黄素环和Phe - 198的侧链之间,Phe - 198在辅酶结合时发生与GR中的Tyr - 197相同的构象变化。除了在TR和GR中保守的Arg - 222和Arg - 228外,β - α - β二核苷酸结合折叠的第二个β - 折叠链的最后一个残基Tyr - 221与NADPH的2'磷酸基团处于氢键结合距离。

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