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大肠杆菌一种新型冷敏感hda突变体中的过度起始模式、dnaA基因表达及细胞分裂抑制

Modes of overinitiation, dnaA gene expression, and inhibition of cell division in a novel cold-sensitive hda mutant of Escherichia coli.

作者信息

Fujimitsu Kazuyuki, Su'etsugu Masayuki, Yamaguchi Yoko, Mazda Kensaku, Fu Nisi, Kawakami Hironori, Katayama Tsutomu

机构信息

Department of Molecular Biology, Graduate School of Pharmaceutical Sciences, Kyushu University, Fukuoka, Japan.

出版信息

J Bacteriol. 2008 Aug;190(15):5368-81. doi: 10.1128/JB.00044-08. Epub 2008 May 23.

Abstract

The chromosomal replication cycle is strictly coordinated with cell cycle progression in Escherichia coli. ATP-DnaA initiates replication, leading to loading of the DNA polymerase III holoenzyme. The DNA-loaded form of the beta clamp subunit of the polymerase binds the Hda protein, which promotes ATP-DnaA hydrolysis, yielding inactive ADP-DnaA. This regulation is required to repress overinitiation. In this study, we have isolated a novel cold-sensitive hda mutant, the hda-185 mutant. The hda-185 mutant caused overinitiation of chromosomal replication at 25 degrees C, which most likely led to blockage of replication fork progress. Consistently, the inhibition of colony formation at 25 degrees C was suppressed by disruption of the diaA gene, an initiation stimulator. Disruption of the seqA gene, an initiation inhibitor, showed synthetic lethality with hda-185 even at 42 degrees C. The cellular ATP-DnaA level was increased in an hda-185-dependent manner. The cellular concentrations of DnaA protein and dnaA mRNA were comparable at 25 degrees C to those in a wild-type hda strain. We also found that multiple copies of the ribonucleotide reductase genes (nrdAB or nrdEF) or dnaB gene repressed overinitiation. The cellular levels of dATP and dCTP were elevated in cells bearing multiple copies of nrdAB. The catalytic site within NrdA was required for multicopy suppression, suggesting the importance of an active form of NrdA or elevated levels of deoxyribonucleotides in inhibition of overinitiation in the hda-185 cells. Cell division in the hda-185 mutant was inhibited at 25 degrees C in a LexA regulon-independent manner, suggesting that overinitiation in the hda-185 mutant induced a unique division inhibition pathway.

摘要

在大肠杆菌中,染色体复制周期与细胞周期进程严格协调。ATP-DnaA启动复制,导致DNA聚合酶III全酶的装载。聚合酶β钳亚基的DNA负载形式与Hda蛋白结合,Hda蛋白促进ATP-DnaA水解,产生无活性的ADP-DnaA。这种调节对于抑制过度起始是必需的。在本研究中,我们分离出了一种新型的冷敏感hda突变体,即hda-185突变体。hda-185突变体在25℃时导致染色体复制过度起始,这很可能导致复制叉进程受阻。一致地,起始刺激因子diaA基因的破坏抑制了25℃时菌落形成的抑制。起始抑制剂seqA基因的破坏即使在42℃时也与hda-185表现出合成致死性。细胞ATP-DnaA水平以hda-185依赖的方式增加。在25℃时,DnaA蛋白和dnaA mRNA的细胞浓度与野生型hda菌株中的相当。我们还发现,核糖核苷酸还原酶基因(nrdAB或nrdEF)或dnaB基因的多拷贝抑制了过度起始。携带多拷贝nrdAB的细胞中dATP和dCTP的细胞水平升高。NrdA内的催化位点是多拷贝抑制所必需的,这表明活性形式的NrdA或脱氧核糖核苷酸水平升高在抑制hda-185细胞过度起始中的重要性。hda-185突变体在25℃时的细胞分裂以LexA调节子非依赖的方式受到抑制,这表明hda-185突变体中的过度起始诱导了一种独特的分裂抑制途径。

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