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Genetic networks controlled by the bacterial replication initiator and transcription factor DnaA in Bacillus subtilis

机译:由细菌复制引发剂和转录因子DNAA控制的遗传网络在枯草芽孢杆菌中

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摘要

DnaA is the widely conserved bacterial AAA+ ATPase that functions as both the replication initiator and a transcription factor. In many organisms, DnaA controls expression of its own gene and likely several others during growth and in response to replication stress. To evaluate the effects of DnaA on gene expression, separate from its role in replication initiation, we analyzed changes in mRNA levels in Bacillus subtilis cells with and without dnaA, using engineered strains in which dnaA is not essential. We found that dnaA was required for many of the changes in gene expression in response to replication stress. We also found that dnaA indirectly affected expression of several regulons during growth, including those controlled by the transcription factors Spo0A, AbrB, PhoP, SinR, RemA, Rok and YvrH. These effects were largely mediated by the effects of DnaA on expression of sda. DnaA activates transcription of sda, and Sda inhibits histidine protein kinases required for activation of the transcription factor Spo0A. We also found that loss of dnaA caused a decrease in the development of genetic competence. Together, our results indicate that DnaA plays an important role in modulating cell physiology, separate from its role in replication initiation.
机译:DNAA是广泛保守的细菌AAA + ATPase,其用作复制引发剂和转录因子。在许多生物中,DNAA控制其自身基因的表达,并且可能在生长期间和响应复制应激期间的其他其他人。为了评估DNAA对基因表达的影响,与其在复制启动中的作用分开,我们分析了枯草芽孢杆菌细胞中mRNA水平的变化,使用DNAA,使用DNAA不是必需的工程菌株。我们发现响应于复制应力的基因表达的许多变化需要DNAA。我们还发现,DNAA在生长期间间接影响了几种调节件的表达,包括由转录因子Spo0a,Abb,Phop,Sinr,Rema,Rok和Yvrh控制的那些。这些效应大大通过DNAA对SDA表达的影响介导。 DNAA激活SDA的转录,SDA抑制活化转录因子SPOO 4所需的组氨酸蛋白激酶。我们还发现,DNAA的丧失引起了遗传竞争力的发展。我们的结果表明,DNAA在调节细胞生理学中起着重要作用,与其在复制启动中的作用中分开。

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