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细菌类核动态:金黄色葡萄球菌中的氧化应激反应

Bacterial nucleoid dynamics: oxidative stress response in Staphylococcus aureus.

作者信息

Morikawa Kazuya, Ohniwa Ryosuke L, Kim Joongbaek, Maruyama Atsushi, Ohta Toshiko, Takeyasu Kunio

机构信息

Institute of Basic Medical Sciences, Graduate School of Comprehensive Human Sciences, University of Tsukuba, Tennoh-dai, Tsukuba 305-8575, Japan.

出版信息

Genes Cells. 2006 Apr;11(4):409-23. doi: 10.1111/j.1365-2443.2006.00949.x.

Abstract

A single-molecule-imaging technique, atomic force microscopy (AFM) was applied to the analyses of the genome architecture of Staphylococcus aureus. The staphylococcal cells on a cover glass were subjected to a mild lysis procedure that had maintained the fundamental structural units in Escherichia coli. The nucleoids were found to consist of fibrous structures with diameters of 80 and 40 nm. This feature was shared with the E. coli nucleoid. However, whereas the E. coli nucleoid dynamically changed its structure to a highly compacted one towards the stationary phase, the S. aureus nucleoid never underwent such a tight compaction under a normal growth condition. Bioinformatic analysis suggested that this was attributable to the lack of IHF that regulate the expression of a nucleoid protein, Dps, required for nucleoid compaction in E. coli. On the other hand, under oxidative conditions, MrgA (a staphylococcal Dps homolog) was over-expressed and a drastic compaction of the nucleoid was detected. A knock-out mutant of the gene encoding the transcription factor (perR) constitutively expressed mrgA, and its nucleoid was compacted without the oxidative stresses. The regulatory mechanisms of Dps/MrgA expression and their biological significance were postulated in relation to the nucleoid compaction.

摘要

一种单分子成像技术,原子力显微镜(AFM)被应用于金黄色葡萄球菌基因组结构的分析。将盖玻片上的葡萄球菌细胞进行温和的裂解程序,该程序能维持大肠杆菌中的基本结构单元。发现类核由直径为80和40纳米的纤维结构组成。这一特征与大肠杆菌类核相同。然而,尽管大肠杆菌类核在稳定期会动态地将其结构转变为高度压缩的结构,但在正常生长条件下,金黄色葡萄球菌类核从未经历过如此紧密的压缩。生物信息学分析表明,这是由于缺乏调节大肠杆菌类核压缩所需的类核蛋白Dps表达的整合宿主因子(IHF)。另一方面,在氧化条件下,MrgA(一种葡萄球菌Dps同源物)过度表达,并且检测到类核的剧烈压缩。编码转录因子(perR)的基因敲除突变体组成性表达mrgA,并且其类核在没有氧化应激的情况下被压缩。推测了Dps/MrgA表达的调控机制及其与类核压缩相关的生物学意义。

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