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Structural insights into catalysis and dimerization enhanced exonuclease activity of RNase J

机译:RNase J催化和二聚化增强核酸外切酶活性的结构见解

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摘要

RNase J is a conserved ribonuclease that belongs to the β-CASP family of nucleases. It possesses both endo- and exo-ribonuclease activities, which play a key role in pre-rRNA maturation and mRNA decay. Here we report high-resolution crystal structures of Deinococcus radiodurans RNase J complexed with RNA or uridine 5′-monophosphate in the presence of manganese ions. Biochemical and structural studies revealed that RNase J uses zinc ions for two-metal-ion catalysis. One residue conserved among RNase J orthologues (motif B) forms specific electrostatic interactions with the scissile phosphate of the RNA that is critical for the catalysis and product stabilization. The additional manganese ion, which is coordinated by conserved residues at the dimer interface, is critical for RNase J dimerization and exonuclease activity. The structures may also shed light on the mechanism of RNase J exo- and endonucleolytic activity switch.
机译:RNase J是保守的核糖核酸酶,属于β-CASP核酸酶家族。它同时具有内切和外切核糖核酸酶活性,在rRNA的前期成熟和mRNA降解中起关键作用。在这里,我们报告在锰离子的存在下,与RNA或尿苷5'-单磷酸酯络合的放线球菌RNase J的高分辨率晶体结构。生化和结构研究表明,RNase J使用锌离子进行双金属离子催化。 RNase J直向同源物(基序B)中一个保守的残基与RNA的易切割磷酸形成特定的静电相互作用,这对于催化和产物稳定至关重要。由二聚体界面处的保守残基协调的额外锰离子对于RNase J二聚作用和核酸外切酶活性至关重要。该结构还可以阐明RNase J外切和内切核酸酶活性转换的机制。

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