Schulze A J, Huber R, Degryse E, Speck D, Bischoff R
Max-Planck-Institut für Biochemie, Martinsried, Federal Republic of Germany.
Eur J Biochem. 1991 Dec 18;202(3):1147-55. doi: 10.1111/j.1432-1033.1991.tb16483.x.
Several variants of alpha 1-proteinase inhibitor (alpha 1-PI) were investigated by spectroscopic methods and characterized according to their inhibitory activity. Replacement of Thr345 (P14) with Arg in alpha 1-PI containing an Arg residue in position 358 (yielding [Thr345----Arg, Met358----Arg]alpha 1-PI) results in complete loss of its inhibitory activity against human alpha-thrombin; whereas an exchange of residue Met351 (P8) by Glu [( Met351----Glu, Met358----Arg]alpha 1-PI) does not alter activity. [Thr345----Arg, Met358----Arg]alpha 1-PI is rapidly cleaved by thrombin, while [Met358----Arg]alpha 1-PI and [Met351----Glu, Met358----Arg]alpha 1-PI form stable proteinase-inhibitor complexes. The stability of [Thr345----Arg, Met358----Arg]alpha 1-PI against guanidinium chloride denaturation is significantly enhanced compared to wild-type alpha 1-PI, and does not change after cleavage, resembling ovalbumin, a serpin with no inhibitory activity, from which the Thr345----Arg amino acid exchange had been derived. [Met351----Glu, Met358----Arg]alpha 1-PI and [Met358----Arg]alpha 1-PI resemble the wild-type protein in this respect. The CD spectra of intact and cleaved alpha 1-PI variants do not compare well with the wild-type protein, probably reflecting local structural differences. Insertion of a synthetic peptide, which corresponds to residues Thr345----Met358 of human alpha 1-PI, leads to the formation of binary complexes with all variants having the characteristic features of the binary complex between peptide and wild-type protein.
采用光谱学方法研究了α1-蛋白酶抑制剂(α1-PI)的几种变体,并根据其抑制活性进行了表征。在358位含有精氨酸残基的α1-PI中,将苏氨酸345(P14)替换为精氨酸(产生[Thr345→Arg,Met358→Arg]α1-PI)会导致其对人α-凝血酶的抑制活性完全丧失;而将残基甲硫氨酸351(P8)替换为谷氨酸([Met351→Glu,Met358→Arg]α1-PI)不会改变活性。[Thr345→Arg,Met358→Arg]α1-PI会被凝血酶迅速裂解,而[Met358→Arg]α1-PI和[Met351→Glu,Met358→Arg]α1-PI会形成稳定的蛋白酶-抑制剂复合物。与野生型α1-PI相比,[Thr345→Arg,Met358→Arg]α1-PI对氯化胍变性的稳定性显著增强,并且在裂解后不变,类似于卵清蛋白(一种无抑制活性的丝氨酸蛋白酶抑制剂,Thr345→Arg氨基酸交换即源自该蛋白)。在这方面,[Met351→Glu,Met358→Arg]α1-PI和[Met358→Arg]α1-PI与野生型蛋白相似。完整和裂解的α1-PI变体的圆二色光谱与野生型蛋白的光谱不太相符,这可能反映了局部结构差异。插入一段对应于人α1-PI的Thr345→Met358残基的合成肽,会导致与所有变体形成二元复合物,这些复合物具有该肽与野生型蛋白之间二元复合物的特征。