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Crystal structure of RNase H3-substrate complex reveals parallel evolution of RNA/DNA hybrid recognition

机译:RNase H3底物复合物的晶体结构揭示了RNA / DNA杂合识别的平行进化

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RNases H participate in the replication and maintenance of genomic DNA. RNase H1 cleaves the RNA strand of RNA/DNA hybrids, and RNase H2 in addition hydrolyzes the RNA residue of RNA-DNA junctions. RNase H3 is structurally closely related to RNases H2, but its biochemical properties are similar to type 1 enzymes. Its unique N-terminal substrate-binding domain (N-domain) is related to TATA-binding protein. Here, we report the first crystal structure of RNase H3 in complex with its RNA/DNA substrate. Just like RNases H1, type 3 enzyme recognizes the 2'-OH groups of the RNA strand and detects the DNA strand by binding a phosphate group and inducing B-form conformation. Moreover, the N-domain recognizes RNA and DNA in a manner that is highly similar to the hybrid-binding domain of RNases H1. Our structure demonstrates a remarkable example of parallel evolution of the elements used in the specific recognition of RNA and DNA.
机译:RNase H参与基因组DNA的复制和维持。 RNase H1裂解RNA / DNA杂合体的RNA链,而RNase H2另外还水解RNA-DNA连接的RNA残基。 RNase H3在结构上与RNase H2密切相关,但其生化特性与1型酶相似。它独特的N末端底物结合结构域(N-domain)与TATA结合蛋白有关。在这里,我们报告与其RNA / DNA底物复杂的RNase H3的第一个晶体结构。就像RNases H1一样,3型酶可以识别RNA链的2'-OH基团,并通过结合磷酸基团并诱导B型构象来检测DNA链。而且,N结构域以与RNA酶H1的杂合结合结构域高度相似的方式识别RNA和DNA。我们的结构证明了RNA和DNA特异性识别中所用元素平行进化的杰出例子。

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