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环孢菌素A与完全氘代亲环蛋白结合的溶液结构以及一种非免疫抑制类似物的溶液结构

Solution structure of cyclosporin A and a nonimmunosuppressive analog bound to fully deuterated cyclophilin.

作者信息

Hsu V L, Armitage I M

机构信息

Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, Connecticut 06510.

出版信息

Biochemistry. 1992 Dec 29;31(51):12778-84. doi: 10.1021/bi00166a010.

Abstract

A simple strategy involving 1H nuclear magnetic resonance (NMR) spectroscopy and complete protein deuteration was used to determine the structures of two receptor-bound drugs. A potent immunosuppressive, cyclosporin A (CsA) binds tightly to the ubiquitous and highly conserved 17.7-kDa immunophilin, cyclophilin (CyP). Fully deuterated CyP was produced by overexpressing the human CyP gene in Escherichia coli grown on deuterated algal hydrolysate in 98% D2O. As only the CsA molecule is protonated in the CsA-CyP complex, we were able to make a complete sequential assignment of the bound drug using standard two-dimensional proton NMR experiments. The structure determination was accomplished using dynamical simulated annealing calculations with a total of 124 NMR-derived distance and torsion angle restraints. Aside from binding CsA, CyP also acts as a peptidyl-prolyl cis-trans isomerase. Thus, much importance had been ascribed to the cis peptide bond present in the structures reported for free CsA in organic solvents and in crystal studies. Interestingly, CyP-bound CsA exists in an all-trans conformation with no detectable elements of regular secondary structure and no intramolecular hydrogen bonds. A nonactive CsA analog, MeAla6-CsA, was studied using the same CyP deuteration strategy. In addition to structural elucidation of the two bound drugs, we were able to differentiate between the bound and surface-exposed residues of the drugs and also validate our previous hypothesis that the single CyP tryptophan is located in the CsA-binding site.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

一种涉及氢核磁共振(NMR)光谱和蛋白质完全氘代的简单策略被用于确定两种受体结合药物的结构。一种强效免疫抑制剂环孢素A(CsA)紧密结合于普遍存在且高度保守的17.7 kDa亲环蛋白(CyP)。通过在98% D2O中以氘代藻类水解产物为培养基培养的大肠杆菌中过表达人CyP基因来制备完全氘代的CyP。由于在CsA-CyP复合物中只有CsA分子是质子化的,我们能够使用标准的二维质子NMR实验对结合的药物进行完整的序列归属。结构测定是通过动态模拟退火计算完成的,总共使用了124个源自NMR的距离和扭转角限制条件。除了结合CsA外,CyP还作为一种肽基脯氨酰顺反异构酶发挥作用。因此,有机溶剂中游离CsA以及晶体研究报道的结构中存在的顺式肽键受到了极大关注。有趣的是,与CyP结合的CsA以全反式构象存在,没有可检测到的规则二级结构元素,也没有分子内氢键。使用相同的CyP氘代策略研究了一种无活性的CsA类似物MeAla6-CsA。除了阐明两种结合药物的结构外,我们还能够区分药物的结合残基和表面暴露残基,并且验证了我们之前的假设,即单个CyP色氨酸位于CsA结合位点。(摘要截短于250字)

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