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The molecular mechanism of dsRNA processing by a bacterial Dicer

机译:细菌切丁酶处理dsRNA的分子机制

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摘要

Members of the ribonuclease (RNase) III family regulate gene expression by processing dsRNAs. It was previously shown that Escherichia coli (Ec) RNase III recognizes dsRNA with little sequence specificity and the cleavage products are mainly 11 nucleotides (nt) long. It was also shown that the mutation of a glutamate (EcE38) to an alanine promotes generation of siRNA-like products typically 22 nt long. To fully characterize substrate specificity and product size of RNase IIIs, we performed in vitro cleavage of dsRNAs by Ec and Aquifex aeolicus (Aa) enzymes and delineated their products by next-generation sequencing. Surprisingly, we found that both enzymes cleave dsRNA at preferred sites, among which a guanine nucleotide was enriched at a specific position (+3G). Based on sequence and structure analyses, we conclude that RNase IIIs recognize +3G via a conserved glutamine (EcQ165/AaQ161) side chain. Abolishing this interaction by mutating the glutamine to an alanine eliminates the observed +3G preference. Furthermore, we identified a second glutamate (EcE65/AaE64), which, when mutated to alanine, also enhances the production of siRNA-like products. Based on these findings, we created a bacterial Dicer that is ideally suited for producing heterogeneous siRNA cocktails to be used in gene silencing studies.
机译:核糖核酸酶(RNase)III家族的成员通过加工dsRNA来调节基因表达。先前已显示,大肠杆菌(Ec)RNase III识别具有很少序列特异性的dsRNA,并且切割产物的长度主要为11个核苷酸(nt)。还显示谷氨酸(EcE38)突变为丙氨酸促进了通常22nt长的siRNA样产物的产生。为了充分表征RNase IIIs的底物特异性和产物大小,我们进行了Ec和Aquifex aeolicus(Aa)酶对dsRNA的体外切割,并通过下一代测序对其产物进行了描述。令人惊讶地,我们发现两种酶均在优选位点切割dsRNA,其中鸟嘌呤核苷酸在特定位置(+ 3G)富集。根据序列和结构分析,我们得出结论,RNase IIIs通过保守的谷氨酰胺(EcQ165 / AaQ161)侧链识别+ 3G。通过将谷氨酰胺突变为丙氨酸消除这种相互作用,消除了观察到的+ 3G偏好。此外,我们鉴定出第二种谷氨酸盐(EcE65 / AaE64),当其突变为丙氨酸时,也可以提高siRNA样产物的产量。基于这些发现,我们创建了一种细菌切块机,非常适合用于基因沉默研究的异质siRNA混合物的生产。

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