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枯草芽孢杆菌单细胞分析揭示的细胞分裂基因的平衡转录。

Balanced transcription of cell division genes in Bacillus subtilis as revealed by single cell analysis.

机构信息

Department of Molecular Microbiology, Groningen Biomolecular Sciences and Biotechnology Institute, Centre for Synthetic Biology, University of Groningen, Nijenborgh 7, 9747 AG, Groningen, the Netherlands.

出版信息

Environ Microbiol. 2013 Dec;15(12):3196-209. doi: 10.1111/1462-2920.12148. Epub 2013 May 24.

Abstract

Cell division in bacteria is carried out by a set of conserved proteins that all have to function at the correct place and time. A cell cycle-dependent transcriptional programme drives cell division in bacteria such as Caulobacter crescentus. Whether such a programme exists in the Gram-positive model organism Bacillus subtilis is unknown. Here, we investigate the role of gene transcription as a potential regulatory mechanism for control of division in B. subtilis. Transcriptional GFP fusions in combination with flow cytometry demonstrated a constitutive promoter activity, independent of growth rate, of nine tested cell division genes. These measurements were verified by quantitative real-time reverse-transcription PCR (qrtPCR). Time-lapse fluorescence microscopy was performed on a set of selected reporter strains to test transcriptional regulation during the cell cycle. Interestingly, although the average fluorescence remained constant during cell-cycle progression, individual cells demonstrated a roughly twofold higher promoter activity at the end of the cell cycle. This cell cycle-dependent increased promoter activity can be partly explained by the doubled promoter copy number after DNA replication. Our results indicate that the transcriptional activity of promoters for cell division genes remains constant regardless of growth rate and cell-cycle state, suggesting that regulation of cell division in B. subtilis predominantly takes place at the post-translational level.

摘要

细菌的细胞分裂是由一组保守的蛋白质完成的,这些蛋白质都必须在正确的位置和时间发挥作用。细胞周期依赖性转录程序驱动着像新月柄杆菌这样的细菌的细胞分裂。在革兰氏阳性模式生物枯草芽孢杆菌中是否存在这样的程序尚不清楚。在这里,我们研究了基因转录作为控制枯草芽孢杆菌分裂的潜在调节机制的作用。转录 GFP 融合与流式细胞术相结合,证明了在九个测试的细胞分裂基因中存在一种与生长速率无关的组成型启动子活性。这些测量结果通过定量实时反转录 PCR (qrtPCR) 得到了验证。对一组选定的报告株进行了延时荧光显微镜检查,以测试细胞周期过程中的转录调控。有趣的是,尽管在细胞周期进展过程中平均荧光保持不变,但个别细胞在细胞周期结束时表现出大约两倍高的启动子活性。这种细胞周期依赖性的增强的启动子活性可以部分解释为 DNA 复制后启动子拷贝数的翻倍。我们的结果表明,细胞分裂基因启动子的转录活性无论生长速率和细胞周期状态如何都保持不变,这表明枯草芽孢杆菌的细胞分裂主要发生在翻译后水平上的调节。

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