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枯草芽孢杆菌 hlpB 编码一种保守的独立 HNH 核酸酶样蛋白,该蛋白对于生存是必需的,除非 hlpB 缺失伴随着编码 AddAB DNA 修复复合物的基因缺失。

Bacillus subtilis hlpB encodes a conserved stand-alone HNH nuclease-like protein that is essential for viability unless the hlpB deletion is accompanied by the deletion of genes encoding the AddAB DNA repair complex.

机构信息

Mikrobiologie, Fachbereich für Biologie, Universität Freiburg, Freiburg, Germany.

出版信息

J Bacteriol. 2012 Nov;194(22):6184-94. doi: 10.1128/JB.05283-11. Epub 2012 Sep 14.

DOI:10.1128/JB.05283-11
PMID:22984257
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3486360/
Abstract

The HNH domain is found in many different proteins in all phylogenetic kingdoms and in many cases confers nuclease activity. We have found that the Bacillus subtilis hlpB (yisB) gene encodes a stand-alone HNH domain, homologs of which are present in several bacterial genomes. We show that the protein we term HlpB is essential for viability. The depletion of HlpB leads to growth arrest and to the generation of cells containing a single, decondensed nucleoid. This apparent condensation-segregation defect was cured by additional hlpB copies in trans. Purified HlpB showed cooperative binding to a variety of double-stranded and single-stranded DNA sequences, depending on the presence of zinc, nickel, or cobalt ions. Binding of HlpB was also influenced by pH and different metals, reminiscent of HNH domains. Lethality of the hlpB deletion was relieved in the absence of addA and of addAB, two genes encoding proteins forming a RecBCD-like end resection complex, but not of recJ, which is responsible for a second end-resectioning avenue. Like AddA-green fluorescent protein (AddA-GFP), functional HlpB-YFP or HlpB-FlAsH fusions were present throughout the cytosol in growing B. subtilis cells. Upon induction of DNA damage, HlpB-FlAsH formed a single focus on the nucleoid in a subset of cells, many of which colocalized with the replication machinery. Our data suggest that HlpB plays a role in DNA repair by rescuing AddAB-mediated recombination intermediates in B. subtilis and possibly also in many other bacteria.

摘要

HNH 结构域存在于所有生物进化域的许多不同蛋白质中,在许多情况下赋予核酸酶活性。我们发现枯草芽孢杆菌 hlpB(yisB)基因编码一个独立的 HNH 结构域,其同源物存在于几个细菌基因组中。我们表明,我们称之为 HlpB 的蛋白质对于生存能力是必不可少的。HlpB 的缺失会导致生长停滞,并产生含有单个去凝聚核体的细胞。这种明显的凝聚-分离缺陷可以通过额外的 hlpB 拷贝在反式中得到纠正。纯化的 HlpB 显示出与多种双链和单链 DNA 序列的协同结合,这取决于锌、镍或钴离子的存在。HlpB 的结合也受到 pH 和不同金属的影响,这让人联想到 HNH 结构域。hlpB 缺失的致死性在 addA 和 addAB 缺失的情况下得到缓解,addA 和 addAB 编码形成 RecBCD 样末端切除复合物的两种蛋白质,但 recJ 缺失则不能缓解,recJ 负责第二种末端切除途径。像 AddA-绿色荧光蛋白(AddA-GFP)一样,功能正常的 HlpB-YFP 或 HlpB-FlAsH 融合蛋白在生长的枯草芽孢杆菌细胞的整个细胞质中都存在。在诱导 DNA 损伤后,HlpB-FlAsH 在一部分细胞的核体上形成一个焦点,其中许多细胞与复制机制共定位。我们的数据表明,HlpB 通过挽救枯草芽孢杆菌中 AddAB 介导的重组中间体,在 DNA 修复中发挥作用,在许多其他细菌中可能也是如此。

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