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大肠杆菌天冬氨酸转氨酶顺式脯氨酸突变体的功能与结构分析

Functional and structural analysis of cis-proline mutants of Escherichia coli aspartate aminotransferase.

作者信息

Birolo L, Malashkevich V N, Capitani G, De Luca F, Moretta A, Jansonius J N, Marino G

机构信息

Dipartimento di Chimica Organica e Biologica, Università "Federico II", Napoli, Italy.

出版信息

Biochemistry. 1999 Jan 19;38(3):905-13. doi: 10.1021/bi981467d.

Abstract

To elucidate the role of the two conserved cis-proline residues of aspartate aminotransferase (AspAT), one double and two single mutants of the enzyme from Escherichia coli (EcAspAT) were prepared: P138A, P195A and P138A/P195A in which the two prolines were replaced by alanine. The crystal structures of P195A and P138A/P195A have been determined at 2.3-2.1 A resolution. The wild-type geometry, including the cis conformation of the 194-195 peptide bond is retained upon substitution of proline 195 by alanine, whereas the trans conformation is adopted at the 137-138 peptide bond. Quite surprisingly, the replacement of each of the two prolines by alanine does not significantly affect either the activity or the stability of the protein. All the three mutants follow the same pathway as the wild type for unfolding equilibrium induced by guanidine hydrochloride [Herold, M., and Kirschner, K. (1990) Biochemistry 29, 1907-1913]. The kinetics of renaturation of P195A, where the alanine retains the wild-type cis conformation, is faster than wild type, whereas renaturation of P138A, which adopts the trans conformation, is slower. We conclude that cis-prolines seem to have been retained throughout the evolution of aspartate aminotransferase to possibly play a subtle role in directing the traffic of intermediates toward the unique structure of the native state, rather than to respond to the needs for a specific catalytic or functional role.

摘要

为阐明天冬氨酸转氨酶(AspAT)中两个保守的顺式脯氨酸残基的作用,制备了大肠杆菌天冬氨酸转氨酶(EcAspAT)的一个双突变体和两个单突变体:P138A、P195A以及P138A/P195A,其中两个脯氨酸被丙氨酸取代。已测定P195A和P138A/P195A在2.3 - 2.1 Å分辨率下的晶体结构。用丙氨酸取代脯氨酸195后,野生型构象得以保留,包括194 - 195肽键的顺式构象,而137 - 138肽键则采用反式构象。非常令人惊讶的是,将两个脯氨酸中的任何一个用丙氨酸取代,都不会显著影响蛋白质的活性或稳定性。在盐酸胍诱导的去折叠平衡中,所有这三个突变体都遵循与野生型相同的途径[Herold, M., and Kirschner, K. (1990) Biochemistry 29, 1907 - 1913]。丙氨酸保留野生型顺式构象的P195A的复性动力学比野生型快,而采用反式构象的P138A的复性则较慢。我们得出结论,在天冬氨酸转氨酶的整个进化过程中,顺式脯氨酸似乎得以保留,可能在引导中间体向天然状态的独特结构转变过程中发挥微妙作用,而不是为了满足特定催化或功能作用的需求。

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