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Structural and mutational studies of the catalytic domain of colicin E5: A tRNA-specific ribonuclease

机译:大肠菌素E5催化域的结构和突变研究:一种tRNA特异性核糖核酸酶。

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摘要

Colicin E5 specifically cleaves four tRNAs in Escherichia coli that contain the modified nucleotide queuosine (Q) at the wobble position, thereby preventing protein synthesis and ultimately resulting in cell death. Here, the crystal structure of the catalytic domain of colicin E5 (E5-CRD) from E. coli was determined at 1.5 angstrom resolution. Unexpectedly, E5-CRD adopts a core folding with a four-stranded beta-sheet packed against an a-helix, seen in the well-studied ribonuclease T1 despite a lack of sequence similarity. Beyond the core catalytic domain, an N-terminal helix, a C-terminal beta-strand and loop, and an extended internal loop constitute an RNA binding cleft. Mutational analysis identified five amino acids that were important for tRNA substrate binding and cleavage by E5-CRD. The structure, together with the mutational study, allows us to propose a model of colicin ES-tRNA interactions,- suggesting the molecular basis of tRNA substrate recognition and the mechanism of tRNA cleavage by colicin E5.
机译:Colicin E5在大肠杆菌中特异地裂解了四个tRNA,这些tRNA在摆动位置含有修饰的核苷酸quesuosine(Q),从而阻止了蛋白质的合成并最终导致细胞死亡。在此,以1.5埃的分辨率确定来自大肠杆菌的大肠菌素E5(E5-CRD)的催化结构域的晶体结构。出乎意料的是,尽管缺乏序列相似性,但在研究透彻的核糖核酸酶T1中,E5-CRD却采用了核心折叠,并在a-螺旋上包裹了四链β-折叠。除了核心催化结构域之外,N末端螺旋,C末端β链和环以及延伸的内部环构成了一个RNA结合裂隙。突变分析确定了5个氨基酸,这些氨基酸对tRNA底物的结合和E5-CRD的裂解很重要。该结构,再加上突变研究,使我们能够提出大肠菌素ES-tRNA相互作用的模型,从而提出了tRNA底物识别的分子基础以及大肠菌素E5裂解tRNA的机制。

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