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大肠杆菌类核蛋白的分离与特性分析

Isolation and characterization of nucleoid proteins from Escherichia coli.

作者信息

Yamazaki K, Nagata A, Kano Y, Imamoto F

出版信息

Mol Gen Genet. 1984;196(2):217-24. doi: 10.1007/BF00328053.

Abstract

Of the molecular species of proteins associated with the nucleoids of Escherichia coli cells, those with relatively high affinity to bind to DNA were isolated and characterized. Seven classes of nucleoid proteins with molecular weights of 9,000, 17,000 (two molecular species), 22,000, 24,000, 27,000 and 28,000 were isolated at more than 90% purity or were partially purified. On the basis of its amino acid composition and other chemical properties, the 9,000 dalton protein was identified as HLP II (or HU protein or BH2) (Pettijohn 1982; Rouvière-Yaniv and Gros 1975; Varshavsky et al. 1978). The 17 K protein consisted of two molecular species and one of these, 17 K (a) protein, seemed to be identical with HLPI (or protein 1 or BH1) reported previously (Pettijohn 1982; Varshavsky et al. 1977; Varshavsky et al. 1978). The 26 K protein was identical to the 22 K protein (Kishi et al. 1982). The 27 K protein showed immunological cross-reactivity with the antibody for histone H2A and was thus identified as the H protein reported previously (Hübscher et al. 1980). Two basic proteins, 9 K and 17 K(a), showed relatively high binding affinities to DNA, while the 28 K protein showed moderate binding affinity. The biological significance of these nucleoid proteins, which constitute a family of proteins participating in formation of the nucleoid structure, is discussed.

摘要

在与大肠杆菌细胞类核相关的蛋白质分子种类中,分离并鉴定了那些与DNA具有相对高亲和力的蛋白质。分离出了七类类核蛋白,其分子量分别为9000、17000(两种分子种类)、22000、24000、27000和28000,纯度超过90%或进行了部分纯化。根据其氨基酸组成和其他化学性质,9000道尔顿的蛋白质被鉴定为HLP II(或HU蛋白或BH2)(佩蒂约翰,1982年;鲁维耶 - 亚尼夫和格罗斯,1975年;瓦尔沙夫斯基等人,1978年)。17K蛋白由两种分子种类组成,其中一种,即17K(a)蛋白,似乎与先前报道的HLPI(或蛋白1或BH1)相同(佩蒂约翰,1982年;瓦尔沙夫斯基等人,1977年;瓦尔沙夫斯基等人,1978年)。26K蛋白与22K蛋白相同(岸田等人,1982年)。27K蛋白与组蛋白H2A的抗体表现出免疫交叉反应,因此被鉴定为先前报道的H蛋白(许布舍尔等人,1980年)。两种碱性蛋白,9K和17K(a),对DNA表现出相对较高的结合亲和力,而28K蛋白表现出中等结合亲和力。讨论了这些构成参与类核结构形成的蛋白质家族的类核蛋白的生物学意义。

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