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To be or not to be: regulation of restriction–modification systems and other toxin–antitoxin systems

机译:成为或不成为:限制改变系统和其他毒素抗毒素系统的调节

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摘要

One of the simplest classes of genes involved in programmed death is that containing the toxin–antitoxin (TA) systems of prokaryotes. These systems are composed of an intracellular toxin and an antitoxin that neutralizes its effect. These systems, now classified into five types, were initially discovered because some of them allow the stable maintenance of mobile genetic elements in a microbial population through postsegregational killing or the death of cells that have lost these systems. Here, we demonstrate parallels between some TA systems and restriction–modification systems (RM systems). RM systems are composed of a restriction enzyme (toxin) and a modification enzyme (antitoxin) and limit the genetic flux between lineages with different epigenetic identities, as defined by sequence-specific DNA methylation. The similarities between these systems include their postsegregational killing and their effects on global gene expression. Both require the finely regulated expression of a toxin and antitoxin. The antitoxin (modification enzyme) or linked protein may act as a transcriptional regulator. A regulatory antisense RNA recently identified in an RM system can be compared with those RNAs in TA systems. This review is intended to generalize the concept of TA systems in studies of stress responses, programmed death, genetic conflict and epigenetics.
机译:涉及程序性死亡的最简单的基因类别之一是含有原核生物的毒素-抗毒素(TA)系统的基因。这些系统由细胞内毒素和中和其作用的抗毒素组成。最初发现这些系统,现在分为五类,因为其中一些系统可以通过分离后的杀死或失去这些系统的细胞死亡,来稳定维持微生物种群中的移动遗传元件。在这里,我们演示了一些技术援助系统和限制修改系统(RM系统)之间的相似之处。 RM系统由限制性内切酶(毒素)和修饰酶(抗毒素)组成,可限制具有不同表观遗传特性的谱系之间的遗传通量,如序列特异性DNA甲基化所定义。这些系统之间的相似之处包括它们的分离后杀死及其对整体基因表达的影响。两者都需要毒素和抗毒素的精细表达。抗毒素(修饰酶)或连接的蛋白质可以充当转录调节因子。可以将RM系统中最近鉴定出的调​​控反义RNA与TA系统中的那些RNA进行比较。这篇综述旨在概括在压力反应,程序性死亡,遗传冲突和表观遗传学研究中TA系统的概念。

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