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A bridge between the aminoacylation and editing domains of leucyl-tRNA synthetase is crucial for its synthetic activity

机译:亮氨酰tRNA合成酶的氨基酰化和编辑域之间的桥梁对其合成活性至关重要

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摘要

Leucyl-tRNA synthetases (LeuRSs) catalyze the linkage of leucine with tRNALeu. LeuRS contains a catalysis domain (aminoacylation) and a CP1 domain (editing). CP1 is inserted 35 Å from the aminoacylation domain. Aminoacylation and editing require CP1 to swing to the coordinated conformation. The neck between the CP1 domain and the aminoacylation domain is defined as the CP1 hairpin. The location of the CP1 hairpin suggests a crucial role in the CP1 swing and domain–domain interaction. Here, the CP1 hairpin of Homo sapiens cytoplasmic LeuRS (hcLeuRS) was deleted or substituted by those from other representative species. Lack of a CP1 hairpin led to complete loss of aminoacylation, amino acid activation, and tRNA binding; however, the mutants retained post-transfer editing. Only the CP1 hairpin from Saccharomyces cerevisiae LeuRS (ScLeuRS) could partly rescue the hcLeuRS functions. Further site-directed mutagenesis indicated that the flexibility of small residues and the charge of polar residues in the CP1 hairpin are crucial for the function of LeuRS.
机译:Leucyl-tRNA合成酶(LeuRSs)催化亮氨酸与tRNA Leu 的连接。 LeuRS包含一个催化域(氨基酰化)和一个CP1域(编辑)。 CP1从氨基酰化结构域插入35Å。氨基酰化和编辑需要CP1转变为协调的构象。 CP1结构域和氨基酰化结构域之间的脖子被定义为CP1发夹。 CP1发夹的位置暗示了CP1摆动和域-域交互作用中的关键作用。在这里,智人的细胞质LeuRS(hcLeuRS)的CP1发夹被删除或被其他代表性物种的CP1发夹取代。 CP1发夹的缺乏导致氨基酰化,氨基酸激活和tRNA结合的完全丧失;然而,突变体保留了转移后的编辑。只有酿酒酵母LeuRS(ScLeuRS)的CP1发夹可以部分挽救hcLeuRS的功能。进一步的定点诱变表明,CP1发夹中小残基的柔性和极性残基的电荷对于LeuRS的功能至关重要。

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