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蛋白质剖析:巴那斯酶模块的功能作用

Protein anatomy: functional roles of barnase module.

作者信息

Yanagawa H, Yoshida K, Torigoe C, Park J S, Sato K, Shirai T, Go M

机构信息

Mitsubishi Kasei Institute of Life Sciences, Tokyo, Japan.

出版信息

J Biol Chem. 1993 Mar 15;268(8):5861-5.

PMID:7680649
Abstract

Globular proteins are composed of several modules that are contiguous polypeptide segments of compact conformation. Module boundaries are closely correlated with the intron positions of genes that encode proteins. The modules may thus have a one-to-one correspondence with exons in primordial genes. They may also be vestiges of polypeptide segments that initially appeared as primordial proteins in prebiological evolution. Clarification as to whether modules disconnected from one another have functional potentiality may validate these possibilities. Thus, in this study, each module of a protein was synthesized and assessed for functional potentiality. For this purpose, barnase, a bacterial ribonuclease, was decomposed into six modules (M1-M6), which were examined to determine whether they have an affinity for RNA and RNase activity. M2, M3, and M6, all of which form a shallow but wide cavity for RNA binding in native barnase, were found to bind to RNA and to possess RNase activity. However, M1 and M5, which support the other modules from the back side, and M4 did not bind to RNA and had no RNase activity. Protein modules with catalytic functions are described in this paper for the first time. That some modules of barnase possess catalytic activity indicates that protein modules may possibly have functioned as primitive catalysts in prebiological evolution.

摘要

球状蛋白由几个模块组成,这些模块是紧密构象的连续多肽片段。模块边界与编码蛋白质的基因的内含子位置密切相关。因此,这些模块可能与原始基因中的外显子一一对应。它们也可能是在生命起源前的进化过程中最初作为原始蛋白质出现的多肽片段的遗迹。弄清楚彼此分离的模块是否具有功能潜力可能会证实这些可能性。因此,在本研究中,合成了一种蛋白质的每个模块,并对其功能潜力进行了评估。为此,将细菌核糖核酸酶巴那斯酶分解为六个模块(M1 - M6),检测它们是否对RNA有亲和力以及是否具有核糖核酸酶活性。在天然巴那斯酶中,M2、M3和M6都形成了一个用于结合RNA的浅而宽的腔,结果发现它们能与RNA结合并具有核糖核酸酶活性。然而,从背面支撑其他模块的M1和M5以及M4不与RNA结合,也没有核糖核酸酶活性。本文首次描述了具有催化功能的蛋白质模块。巴那斯酶的一些模块具有催化活性,这表明蛋白质模块在生命起源前的进化过程中可能曾作为原始催化剂发挥作用。

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