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Tertiary network in mammalian mitochondrial tRNAAsp revealed by solution probing and phylogeny.

机译:通过溶液探测和系统发育揭示了哺乳动物线粒体tRNAAsp中的第三级网络。

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摘要

Primary and secondary structures of mammalian mitochondrial (mt) tRNAs are divergent from canonical tRNA structures due to highly skewed nucleotide content and large size variability of D- and T-loops. The nonconservation of nucleotides involved in the expected network of tertiary interactions calls into question the rules governing a functional L-shaped three-dimensional (3D) structure. Here, we report the solution structure of human mt-tRNAAsp in its native post-transcriptionally modified form and as an in vitro transcript. Probing performed with nuclease S1, ribonuclease V1, dimethylsulfate, diethylpyrocarbonate and lead, revealed several secondary structures for the in vitro transcribed mt-tRNAAsp including predominantly the cloverleaf. On the contrary, the native tRNAAsp folds into a single cloverleaf structure, highlighting the contribution of the four newly identified post-transcriptional modifications to correct folding. Reactivities of nucleotides and phosphodiester bonds in the native tRNA favor existence of a full set of six classical tertiary interactions between the D-domain and the variable region, forming the core of the 3D structure. Reactivities of D- and T-loop nucleotides support an absence of interactions between these domains. According to multiple sequence alignments and search for conservation of Leontis-Westhof interactions, the tertiary network core building rules apply to all tRNAAsp from mammalian mitochondria.
机译:哺乳动物线粒体(mt)tRNA的一级和二级结构与规范的tRNA结构不同,这是由于核苷酸含量高度偏斜以及D和T环的大小可变性所致。预期的三级相互作用网络中所涉及的核苷酸的非保守性使人们对控制功能性L形三维(3D)结构的规则提出了质疑。在这里,我们报告人类mt-tRNAAsp的溶液结构,以其天然的转录后修饰形式以及作为体外转录本。用核酸酶S1,核糖核酸酶V1,硫酸二甲酯,焦碳酸二乙酯和铅进行的探测揭示了体外转录的mt-tRNAAsp的几个二级结构,主要包括苜蓿叶。相反,天然tRNAAsp折叠成单个苜蓿叶结构,突出了四个新鉴定的转录后修饰对正确折叠的贡献。天然tRNA中核苷酸和磷酸二酯键的反应性有利于在D结构域和可变区之间形成完整的六个经典三级相互作用,形成3D结构的核心。 D-和T-环核苷酸的反应性支持这些域之间不存在相互作用。根据多个序列比对并寻找Leontis-Westhof相互作用的保守性,第三级网络核心构建规则适用于来自哺乳动物线粒体的所有tRNAAsp。

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