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还原型牛胰蛋白酶抑制剂具有紧密的结构。

Reduced bovine pancreatic trypsin inhibitor has a compact structure.

作者信息

Amir D, Haas E

机构信息

Department of Life Science, Bar-Ilan University, Ramat Gan, Israel.

出版信息

Biochemistry. 1988 Dec 13;27(25):8889-93. doi: 10.1021/bi00425a003.

Abstract

The conformation of reduced bovine pancreatic trypsin inhibitor (R-BPTI) under reducing conditions was monitored by measurements of nonradiative excitation energy-transfer efficiencies (E) between a donor probe attached to the N-terminal Arg1 residue and an acceptor attached to one of the lysine residues (15, 26, 41, or 46) [Amir, D., & Haas, E. (1987) Biochemistry 26, 2162-2175]. High-excitation energy-transfer efficiencies that approach those found in the native state were obtained for the reduced labeled BPTI derivatives in 0.5 M guanidine hydrochloride (Gdn.HCl) and 4 mM DTT. Unlike the dependence expected for a random coil chain, E does not decrease as a function of the number of residues between the labeled sites. The efficiency of energy transfer between probes attached to residues 1 and 15 in the reduced state is higher than that found for the same pair of sites in the native state or reduced unfolded (in 6 M Gdn.HCl) state. This segment also shows high dynamic flexibility. These results indicate that the overall structure of reduced BPTI under folding (but still reducing) conditions shows a high population of conformers with interprobe distances similar to those of the native state. Reduced BPTI seems to be in a molten globule state characterized by a flexible, compact structure, which probably reorganizes into the native structure when the folding is allowed to proceed under oxidizing conditions.

摘要

在还原条件下,通过测量连接到N端精氨酸残基(Arg1)上的供体探针与连接到赖氨酸残基(15、26、41或46)之一上的受体之间的非辐射激发能量转移效率(E),来监测还原型牛胰蛋白酶抑制剂(R-BPTI)的构象[阿米尔,D.,& 哈斯,E.(1987年)《生物化学》26,2162 - 2175]。对于在0.5 M盐酸胍(Gdn.HCl)和4 mM二硫苏糖醇(DTT)中的还原型标记BPTI衍生物,获得了接近天然状态下的高激发能量转移效率。与随机卷曲链预期的依赖性不同,E并不随着标记位点之间的残基数目的增加而降低。在还原状态下连接到残基1和15上的探针之间的能量转移效率高于在天然状态或还原的未折叠状态(在6 M Gdn.HCl中)下相同位点对的效率。该片段还表现出高动态灵活性。这些结果表明,在折叠(但仍处于还原状态)条件下还原型BPTI的整体结构显示出大量构象异构体,其探针间距离与天然状态相似。还原型BPTI似乎处于一种熔球状态,其特征是结构灵活且紧凑,当在氧化条件下允许折叠进行时,它可能会重新组织成天然结构。

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