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秀丽隐杆线虫微处理器的剖析。

Dissection of the Caenorhabditis elegans Microprocessor.

机构信息

Division of Life Science, The Hong Kong University of Science & Technology, Hong Kong, China.

出版信息

Nucleic Acids Res. 2023 Feb 28;51(4):1512-1527. doi: 10.1093/nar/gkac1170.

Abstract

Microprocessor (MP) is a complex involved in initiating the biogenesis of microRNAs (miRNAs) by cleaving primary microRNAs (pri-miRNAs). miRNAs are small single-stranded RNAs that play a key role in the post-transcriptional regulation of gene expression. Thus, understanding the molecular mechanism of MP is critical for interpreting the roles of miRNAs in normal cellular processes and during the onset of various diseases. MP comprises a ribonuclease enzyme, DROSHA, and a dimeric RNA-binding protein, which is called DGCR8 in humans and Pasha in Caenorhabditis elegans. DROSHA cleaves stem-loop structures located within pri-miRNAs to generate pre-miRNAs. Although the molecular mechanism of human MP (hMP; hDROSHA-DGCR8) is well understood, that of Caenorhabditis elegans MP (cMP; cDrosha-Pasha) is still largely unknown. Here, we reveal the molecular mechanism of cMP and show that it is distinct from that of hMP. We demonstrate that cDrosha and Pasha measure ∼16 and ∼25 bp along a pri-miRNA stem, respectively, and they work together to determine the site of cMP cleavage in pri-miRNAs. We also demonstrate the molecular basis for their substrate measurement. Thus, our findings reveal a previously unknown molecular mechanism of cMP; demonstrate the differences between the mechanisms of hMP and cMP; and provide a foundation for revealing the mechanisms regulating miRNA expression in different animal species.

摘要

微处理器(MP)是一种复杂的酶,通过切割初级 microRNAs(pri-miRNAs)来启动 microRNAs(miRNAs)的生物发生。miRNAs 是小的单链 RNA,在基因表达的转录后调控中发挥关键作用。因此,了解 MP 的分子机制对于解释 miRNAs 在正常细胞过程和各种疾病发生中的作用至关重要。MP 由一种核糖核酸酶酶 DROSHA 和一种二聚体 RNA 结合蛋白组成,在人类中称为 DGCR8,在秀丽隐杆线虫中称为 Pasha。DROSHA 切割位于 pri-miRNAs 内部的茎环结构,生成 pre-miRNAs。尽管人源 MP(hMP;hDROSHA-DGCR8)的分子机制已经得到很好的理解,但线虫 MP(cMP;cDrosha-Pasha)的分子机制仍在很大程度上未知。在这里,我们揭示了 cMP 的分子机制,并表明它与 hMP 的分子机制不同。我们证明 cDrosha 和 Pasha 分别沿着 pri-miRNA 茎测量约 16 和 25 个碱基对,它们共同决定 cMP 在 pri-miRNAs 中的切割位点。我们还证明了它们底物测量的分子基础。因此,我们的发现揭示了 cMP 的一个以前未知的分子机制;证明了 hMP 和 cMP 机制之间的差异;并为揭示不同动物物种中 miRNA 表达调控的机制提供了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c222/9976908/ba911b17e676/gkac1170figgra1.jpg

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