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Integrated circuits: how transcriptional silencing and counter-silencing facilitate bacterial evolution

机译:集成电路:转录沉默和反沉默如何促进细菌进化

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摘要

Horizontal gene transfer is a major contributor to bacterial evolution and diversity. For a bacterial cell to utilize newly-acquired traits such as virulence and antibiotic resistance, new genes must be integrated into the existing regulatory circuitry to allow appropriate expression. Xenogeneic silencing of horizontally-acquired genes by H-NS or other nucleoid-associated proteins avoids adventitious expression and can be relieved by other DNA-binding counter-silencing proteins in an environmentally-responsive and physiologically-responsive manner. Biochemical and genetic analyses have recently demonstrated that counter-silencing can occur at a variety of promoter architectures, in contrast to classical transcriptional activation. Disruption of H-NS nucleoprotein filaments by DNA bending is a suggested mechanism by which silencing can be relieved. This review discusses recent advances in our understanding of the mechanisms and importance of xenogeneic silencing and counter-silencing in the successful integration of horizontally-acquired genes into regulatory networks.
机译:水平基因转移是细菌进化和多样性的主要因素。为了使细菌细胞利用新获得的特性,例如毒力和抗生素抗性,必须将新基因整合到现有的调节电路中以允许适当的表达。 H-NS或其他类核苷酸相关蛋白对水平获得的基因的异源沉默避免了偶然表达,并且可以以对环境敏感和对生理敏感的方式被其他与DNA结合的抗沉默蛋白缓解。最近的生化和遗传分析表明,与经典的转录激活相反,反沉默可以在多种启动子结构上发生。 DNA弯曲破坏H-NS核蛋白丝是一种可以缓解沉默的机制。这篇综述讨论了我们对异源沉默和反沉默机制以及将水平获得的基因成功整合到调控网络中的重要性的理解方面的最新进展。

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