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tRNA-like recognition of group I introns by a tyrosyl-tRNA synthetase

机译:酪氨酰-tRNA合成酶对第I组内含子的tRNA样识别

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摘要

The Neurospora crassa mitochondrial tyrosyl-tRNA synthetase (CYT-18 protein) functions in splicing group I introns by promoting the formation of the catalytically active RNA structure. Previous work suggested that CYT-18 recognizes a conserved tRNA-like structure of the group I intron catalytic core. Here, directed hydroxyl-radical cleavage assays show that the nucleotide-binding fold and C-terminal domains of CYT-18 interact with the expected group I intron cognates of the aminoacyl-acceptor stem and D-anticodon arms, respectively. Further, three-dimensional graphic modeling, supported by biochemical data, shows that conserved regions of group I introns can be superimposed over interacting regions of the tRNA in a Thermus thermophilus TyrRS/tRNATyr cocrystal structure. Our results support the hypothesis that CYT-18 and other aminoacyl-tRNA synthetases interact with group I introns by recognizing conserved tRNA-like structural features of the intron RNAs.
机译:Neurospora crassa线粒体酪氨酰-tRNA合成酶(CYT-18蛋白)通过促进催化活性RNA结构的形成,在剪接I类内含子中起作用。先前的工作表明CYT-18识别I组内含子催化核心的保守tRNA样结构。在这里,直接的羟基自由基裂解试验表明,CYT-18的核苷酸结合折叠和C末端结构域分别与预期的I组内含子同源,它们分别是氨基酰基受体茎和D-anticodon臂。此外,在生化数据的支持下,三维图形建模显示,I组内含子的保守区可以重叠在嗜热栖热菌TyrRS / tRNA Tyr 共晶体结构中tRNA的相互作用区域上。我们的结果支持以下假设:CYT-18和其他氨酰基-tRNA合成酶通过识别保守的内含子RNA的tRNA样结构特征与I组内含子相互作用。

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