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首页> 外文期刊>Molecular Microbiology >RloC: a wobble nucleotide-excising and zinc-responsive bacterial tRNase.
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RloC: a wobble nucleotide-excising and zinc-responsive bacterial tRNase.

机译:RloC:摆动核苷酸和锌反应性细菌tRNase。

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摘要

SUMMARY: The conserved bacterial protein RloC, a distant homologue of the tRNA(Lys) anticodon nuclease (ACNase) PrrC, is shown here to act as a wobble nucleotide-excising and Zn(++)-responsive tRNase. The more familiar PrrC is silenced by a genetically linked type I DNA restriction-modification (R-M) enzyme, activated by a phage anti-DNA restriction factor and counteracted by phage tRNA repair enzymes. RloC shares PrrC's ABC ATPase motifs and catalytic ACNase triad but features a distinct zinc-hook/coiled-coil insert that renders its ATPase domain similar to Rad50 and related DNA repair proteins. Geobacillus kaustophilus RloC expressed in Escherichia coli exhibited ACNase activity that differed from PrrC's in substrate preference and ability to excise the wobble nucleotide. The latter specificity could impede reversal by phage tRNA repair enzymes and account perhaps for RloC's more frequent occurrence. Mutagenesis and functional assays confirmed RloC's catalytic triad assignment and implicated its zinchook in regulating the ACNase function. Unlike PrrC, RloC is rarely linked to a type I R-M system but other genomic attributes suggest their possible interaction in trans. As DNA damage alleviates type I DNA restriction, we further propose that these related perturbations prompt RloC to disable translation and thus ward off phage escaping DNA restriction during the recovery from DNA damage.
机译:摘要:保守的细菌蛋白RloC,tRNA(Lys)反密码子核酸酶(ACNase)PrrC的遥远同源物,在此处显示为摆动核苷酸切除和Zn(++)响应的tRNase。更熟悉的PrrC被基因连锁的I型DNA限制性修饰(R-M)酶沉默,被噬菌体抗DNA限制性因子激活并被噬菌体tRNA修复酶抵消。 RloC共享PrrC的ABC ATPase基序和催化性ACNase三联体,但具有独特的锌钩/卷曲螺旋插入物,使其ATPase结构域与Rad50和相关的DNA修复蛋白相似。在大肠杆菌中表达的嗜碱地芽孢杆菌RloC表现出的ACNase活性在底物偏好和切除摆动核苷酸的能力方面不同于PrrC。后者的特异性可能会阻止噬菌体tRNA修复酶逆转,并可能是RloC发生频率更高的原因。诱变和功能分析证实RloC的催化三联体分配,并暗示其锌钩调节ACNase的功能。与PrrC不同,RloC很少与I型R-M系统链接,但其他基因组属性表明它们可能发生反式相互作用。由于DNA损伤减轻了I型DNA的限制,我们进一步建议这些相关的扰动促使RloC禁用翻译,从而在从DNA损伤的恢复过程中避免噬菌体逃脱了DNA的限制。

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