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首页> 外文期刊>Molecular Microbiology >Bacterial toxin YafQ is an endoribonuclease that associates with the ribosome and blocks translation elongation through sequence-specific and frame-dependent mRNA cleavage.
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Bacterial toxin YafQ is an endoribonuclease that associates with the ribosome and blocks translation elongation through sequence-specific and frame-dependent mRNA cleavage.

机译:细菌毒素YafQ是一种核糖核酸内切酶,与核糖体缔合,并通过序列特异性和框架依赖性mRNA切割来阻止翻译延伸。

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摘要

Toxin-antitoxin (TA) systems on the chromosomes of free-living bacteria appear to facilitate cell survival during intervals of stress by inducing a state of reversible growth arrest. However, upon prolonged stress, TA toxin action leads to cell death. They have been implicated in several clinically important phenomena--bacterial persistence during antibiotic treatment, biofilm formation and bacterial pathogenesis--and serve as attractive new antibiotic targets for pathogens. We determined the mode of action of the YafQ toxin of the DinJ-YafQ TA system. YafQ expression resulted in inhibition of translation, but not transcription or replication. Purified YafQ exhibited robust ribonuclease activity in vitro that was specifically blocked by the addition of DinJ. However, YafQ associated with ribosomes in vivo and facilitated rapid mRNA degradation near the 5' end via cleavage at AAA lysine codons followed by a G or A. YafQ(H87Q) mutants lost toxicity and cleavage activity but retained ribosome association.Finally, LexA bound to the dinJ-yafQ palindrome and triggered module transcription after DNA damage. YafQ function is distinct from other TA toxins: it associates with the ribosome through the 50S subunit and mediates sequence-specific and frame-dependent mRNA cleavage at (5')AAA-G/A(3') sequences leading to rapid decay possibly facilitated by the mRNA degradosome.
机译:自由生活细菌的染色体上的毒素-抗毒素(TA)系统通过诱导可逆的生长停滞状态,似乎在应激间隔期间促进了细胞存活。但是,长时间的压力下,TA毒素作用会导致细胞死亡。它们与几种临床上重要的现象有关-抗生素治疗过程中的细菌残留,生物膜形成和细菌发病机理-并成为病原体的有吸引力的新抗生素靶标。我们确定了DinJ-YafQ TA系统的YafQ毒素的作用方式。 YafQ表达导致翻译抑制,但不抑制转录或复制。纯化的YafQ在体外表现出强大的核糖核酸酶活性,该活性被添加DinJ特异地阻断。然而,YafQ在体内与核糖体有关,并通过在AAA赖氨酸密码子上被G或A裂解后促进了5'端附近的快速mRNA降解.YafQ(H87Q)突变体失去了毒性和裂解活性,但保留了核糖体缔合。 DNA损伤后进入dinJ-yafQ回文并触发模块转录。 YafQ功能不同于其他TA毒素:它通过50S亚基与核糖体缔合,并介导在(5')AAA-G / A(3')序列上发生序列特异性和框架依赖性mRNA切割,从而可能促进了快速衰变由mRNA降解体。

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