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在枯草芽孢杆菌168中,横壁的磷壁酸可能与柱状部分的磷壁酸不同:基于tag基因转录分析的假说。

In Bacillus subtilis 168, teichoic acid of the cross-wall may be different from that of the cylinder: a hypothesis based on transcription analysis of tag genes.

作者信息

Mauël C, Bauduret A, Chervet C, Beggah S, Karamata D

机构信息

Institut de Génétique et de Biologie Microbiennes, Lausanne, Switzerland.

出版信息

Microbiology (Reading). 1995 Oct;141 ( Pt 10):2379-89. doi: 10.1099/13500872-141-10-2379.

DOI:10.1099/13500872-141-10-2379
PMID:7581998
Abstract

Five of the genes known to encode the enzymes for the synthesis of poly(glycerol phosphate), the major teichoic acid of Bacillus subtilis 168, are organized in two divergently transcribed operons, tagAB and tagDEF. lacZ and gus transcriptional fusions to the first genes of these operons revealed that: (i) in media of different richness, higher growth rates were paralleled by lower transcription levels; (ii) upon transition to stationary phase, the transcription per unit mass of both operons increased abruptly by a factor of about two; and (iii) a rise in temperature was accompanied by decreased transcription of tagA and increased transcription of tagD. Mapping of transcription start points revealed two divergent sigma A-controlled promoters. Although tagD and the neighbouring downstream gene tagE are transcribed from the same promoter, the latter was expressed at a much lower level than the former. Moreover, expression of tagE, and of the translationally coupled tagF, did not increase at the onset of the stationary phase, indicating that additional regulatory signals may act in the intergenic tagD-tagE region. Optimal transcription of these operons appears to require the entire regulatory region, suggesting that tag gene expression may, among other factors, be regulated by the three-dimensional configuration of this segment. The biological implications of these results are discussed.

摘要

已知编码枯草芽孢杆菌168主要磷壁酸聚(甘油磷酸)合成酶的五个基因,以两个反向转录的操纵子tagAB和tagDEF的形式组织在一起。与这些操纵子的第一个基因的lacZ和gus转录融合表明:(i)在不同丰富度的培养基中,较高的生长速率与较低的转录水平平行;(ii)进入稳定期后,两个操纵子每单位质量的转录量突然增加约两倍;(iii)温度升高伴随着tagA转录减少和tagD转录增加。转录起始点的定位揭示了两个由σA控制的反向启动子。尽管tagD和相邻的下游基因tagE从同一个启动子转录,但后者的表达水平远低于前者。此外,tagE以及翻译偶联的tagF在稳定期开始时并未增加表达,这表明在tagD-tagE基因间区域可能存在其他调控信号。这些操纵子的最佳转录似乎需要整个调控区域,这表明tag基因的表达可能在其他因素中,受该片段三维结构的调控。讨论了这些结果的生物学意义。

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引用本文的文献

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