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重组无壁菌组蛋白样 HU 蛋白的纯化与功能分析。

Purification and functional analysis of recombinant Acholeplasma laidlawii histone-like HU protein.

机构信息

Research Institute for Physico-Chemical Medicine of Federal Medical-Biological Agency of Russian Federation, Malaya Pirogovskaya str. 1A, Moscow, Russia.

出版信息

Biochimie. 2011 Jul;93(7):1102-9. doi: 10.1016/j.biochi.2011.03.005. Epub 2011 Apr 1.

Abstract

HU is a most abundant DNA-binding protein in bacteria. This protein is conserved either in its heterodimeric form or in one of its homodimeric forms in all bacteria, in plant chloroplasts, and in some viruses. HU protein non-specifically binds and bends DNA as a hetero- or homodimer and can participate in DNA supercoiling and DNA condensation. It also takes part in some DNA functions such as replication, recombination, and repair. HU does not recognize any specific sequences but shows some specificity to cruciform DNA and to repair intermediates, e.g., nick, gap, bulge, 3'-overhang, etc. To understand the features of HU binding to DNA and repair intermediates, a fast and easy HU proteins purification procedure is required. Here we report overproduction and purification of the HU homodimers. The method of HU purification allows obtaining a pure recombinant non-tagged protein cloned in Escherichia coli. We applied this method for purification of Acholeplasma laidlawii HU and demonstrated that this protein possesses a DNA-binding activity and is free of contaminating nuclease activity. Besides that we have shown that expression of A. laidlawii ihf_hu gene in a slow-growing hupAB E. coli strain restores the wild-type growth indicating that aclHU can perform the basic functions of E. coli HU in vivo.

摘要

HU 是细菌中含量最丰富的 DNA 结合蛋白。这种蛋白质在所有细菌、植物叶绿体和一些病毒中以其异二聚体形式或其同源二聚体形式之一保守存在。HU 蛋白作为异源或同源二聚体非特异性地结合和弯曲 DNA,并能参与 DNA 超螺旋和 DNA 凝聚。它还参与一些 DNA 功能,如复制、重组和修复。HU 不识别任何特定序列,但对十字形 DNA 和修复中间体(如缺口、间隙、膨出、3'-突出等)显示出一定的特异性。为了了解 HU 与 DNA 和修复中间体结合的特征,需要一种快速且易于操作的 HU 蛋白纯化程序。在这里,我们报告了 HU 同源二聚体的大量生产和纯化。HU 纯化方法允许获得在大肠杆菌中克隆的纯重组非标记蛋白。我们应用这种方法纯化了 Acholeplasma laidlawii HU,并证明该蛋白具有 DNA 结合活性,且无核酸酶污染。此外,我们还表明,在生长缓慢的 hupAB 大肠杆菌菌株中表达 A. laidlawii ihf_hu 基因可以恢复野生型生长,表明 aclHU 可以在体内执行大肠杆菌 HU 的基本功能。

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