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Structural and biochemical insights into the dicing mechanism of mouse Dicer: A conserved lysine is critical for dsRNA cleavage

机译:小鼠切块机切割机制的结构和生化见解:赖氨酸的保守对于dsRNA的切割至关重要

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摘要

Dicer, an RNase III enzyme, initiates RNA interference by processing precursor dsRNAs into mature microRNAs and small-interfering RNAs. It is also involved in loading and activation of the RNA-induced silencing complex. Here, we report the crystal structures of a catalytically active fragment of mouse Dicer, containing the RNase IIIb and dsRNA binding domains, in its apo and Cd2+-bound forms, at 1.68- and 2.8-Å resolution, respectively. Models of this structure with dsRNA reveal that a lysine residue, highly conserved in Dicer RNase IIIa and IIIb domains and in Drosha RNase IIIb domains, has the potential to participate in the phosphodiester bond cleavage reaction by stabilizing the transition state and leaving group of the scissile bond. Mutational and enzymatic assays confirm the importance of this lysine in dsRNA cleavage, suggesting that this lysine represents a conserved catalytic residue of Dicers. The structures also reveals a ≈45-aa region within the RNase IIIb domain that harbors an α-helix at the N-terminal half and a flexible loop at the C-terminal half, features not present in previously reported structures of homologous RNase III domains from either bacterial RNase III enzymes or Giardia Dicer. N-terminal residues of this α-helix have the potential to engage in minor groove interaction with dsRNA substrates.
机译:Dicer是一种RNase III酶,它通过将前体dsRNA加工成成熟的microRNA和小干扰RNA来引发RNA干扰。它也参与RNA诱导的沉默复合物的加载和激活。在这里,我们报告了小鼠切块机的催化活性片段的晶体结构,该片段含有apo和Cd 2 + 结合形式的RNase IIIb和dsRNA结合域,分别位于1.68-和2.8-Å分辨率分别。具有dsRNA的这种结构的模型显示,在Dicer RNase IIIa和IIIb结构域以及Drosha RNase IIIb结构域中高度保守的赖氨酸残基具有通过稳定过渡态和易裂基团而参与磷酸二酯键裂解反应的潜力。键。突变和酶法测定证实了这种赖氨酸在dsRNA裂解中的重要性,表明该赖氨酸代表了Dicers的保守催化残基。该结构还揭示了RNase IIIb结构域内的一个约45-aa区域,该结构在N末端一半处带有一个α螺旋,在C末端一半处带有一个柔性环,这是以前报道的同源RNase III结构域中不存在的特征来自细菌RNase III酶或贾第鞭毛虫切丁机。该α-螺旋的N末端残基具有与dsRNA底物进行微小沟相互作用的潜力。

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