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A Complex Genetic Switch Involving Overlapping Divergent Promoters and DNA Looping Regulates Expression of Conjugation Genes of a Gram-positive Plasmid

机译:一个复杂的遗传开关,涉及重叠的启动子和DNA环调控革兰氏阳性质粒的缀合基因的表达。

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Plasmid conjugation plays a significant role in the dissemination of antibiotic resistance and pathogenicity determinants. Understanding how conjugation is regulated is important to gain insights into these features. Little is known about regulation of conjugation systems present on plasmids from Gram-positive bacteria. pLS20 is a native conjugative plasmid from the Gram-positive bacterium Bacillus subtilis. Recently the key players that repress and activate pLS20 conjugation have been identified. Here we studied in detail the molecular mechanism regulating the pLS20 conjugation genes using both in vivo and in vitro approaches. Our results show that conjugation is subject to the control of a complex genetic switch where at least three levels of regulation are integrated. The first of the three layers involves overlapping divergent promoters of different strengths regulating expression of the conjugation genes and the key transcriptional regulator RcoLS20. The second layer involves a triple function of RcoLS20 being a repressor of the main conjugation promoter and an activator and repressor of its own promoter at low and high concentrations, respectively. The third level of regulation concerns formation of a DNA loop mediated by simultaneous binding of tetrameric RcoLS20 to two operators, one of which overlaps with the divergent promoters. The combination of these three layers of regulation in the same switch allows the main conjugation promoter to be tightly repressed during conditions unfavorable to conjugation while maintaining the sensitivity to accurately switch on the conjugation genes when appropriate conditions occur. The implications of the regulatory switch and comparison with other genetic switches involving DNA looping are discussed.
机译:质粒结合在抗生素抗性和致病性决定因素的传播中起重要作用。了解共轭调控的方式对于深入了解这些功能很重要。对于革兰氏阳性细菌质粒上存在的缀合系统的调控知之甚少。 pLS20是来自革兰氏阳性枯草芽孢杆菌的天然结合质粒。最近,已经发现了抑制和激活pLS20偶联的关键参与者。在这里,我们详细研究了使用体内和体外方法调节pLS20缀合基因的分子机制。我们的结果表明,缀合受复杂的遗传转换控制,其中至少整合了三个水平的调控。三层中的第一层涉及重叠的不同强度的不同启动子的重叠启动子,这些启动子调节接合基因和关键转录调节子RcoLS20的表达。第二层涉及RcoLS20的三重功能,RcoLS20分别是低浓度和高浓度时的主要缀合启动子的阻遏物和其自身启动子的活化剂和阻遏物。第三级调控涉及四聚体RcoLS20同时结合至两个操纵子介导的DNA环的形成,其中一个操纵子与趋异的启动子重叠。在同一开关中将这三层调节结合在一起,可以在不利于接合的条件下严密抑制主接合启动子,同时在发生适当条件时保持准确开启接合基因的敏感性。讨论了调控开关的含义以及与其他涉及DNA环化的遗传开关的比较。

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