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Transfer-messenger RNA and SmpB mediate bacteriostasis in Escherichia coli cells against tRNA cleavage

机译:传递信使RNA和SmpB介导大肠杆菌细胞对抗tRNA裂解的抑菌作用。

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RNAs, such as mRNA, rRNA and tRNA, are essential macromolecules for cell survival and maintenance. Any perturbation of these molecules, such as by degradation or mutation, can be toxic to cells and may occasionally induce cell death. Therefore, cells have mechanisms known as quality control systems to eliminate abnormal RNAs. Although tRNA is a stable molecule, the anticodon loop is quite susceptible to tRNA-targeting RNases such as colicin E5 and colicin D. However, the mechanism underlying cellular reaction to tRNA cleavage remains unclear. It had long been believed that tRNA cleavage by colicins E5 and D promptly induces cell death because colony formation of the sensitive cells is severely reduced; this indicates that cells do not resist the tRNA cleavage. Here, we show that Escherichia coli cells enter a bacteriostatic state against the tRNA cleavage of colicins D and E5. The bacteriostasis requires small protein B (SmpB) and transfer-messenger RNA (tmRNA), which are known to mediate trans-translation. Furthermore, another type of colicin, colicin E3 cleaving rRNA, immediately reduces the viability of sensitive cells. Moreover, nascent peptide degradation has an additive effect on bacteriostasis. Considering the recent observation that tRNA cleavage may be used as a means of cell-to-cell communication, tRNA cleavage could be used by bacteria not only to dominate other bacteria living in the same niche, but also to regulate growth of their own or other cells.
机译:RNA,例如mRNA,rRNA和tRNA,是细胞存活和维持所必需的大分子。这些分子的任何扰动(例如通过降解或突变)可能对细胞有毒,并可能偶尔引起细胞死亡。因此,细胞具有消除异常RNA的机制,称为质量控制系统。尽管tRNA是一个稳定的分子,但反密码子环对靶向tRNA的RNase(例如大肠菌素E5和大肠菌素D)非常敏感。但是,细胞对tRNA裂解的反应机制尚不清楚。长期以来,人们一直认为大肠菌素E5和D对tRNA的切割会迅速诱导细胞死亡,因为敏感细胞的集落形成会大大减少。这表明细胞不抵抗tRNA裂解。在这里,我们显示大肠杆菌细胞进入针对大肠菌素D和E5的tRNA裂解的抑菌状态。抑菌需要小蛋白B(SmpB)和传递信使RNA(tmRNA),已知它们介导反翻译。此外,另一种大肠菌素,大肠菌素E3裂解rRNA,立即降低了敏感细胞的活力。此外,新生的肽降解对抑菌具有累加作用。考虑到最近的观察,即tRNA裂解可以用作细胞间通讯的一种手段,tRNA裂解不仅可以被细菌用来控制生活在同一生态位中的其他细菌,还可以调节它们自身或其他细菌的生长。细胞。

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