St Vincent's Institute of Medical Research, Fitzroy, VIC, 3065, Australia.
Department of Medicine (St Vincent's), University of Melbourne, Fitzroy, VIC, 3065, Australia.
Sci Rep. 2024 Mar 20;14(1):6713. doi: 10.1038/s41598-024-57330-5.
The RNase III enzyme Drosha has a central role in microRNA (miRNA) biogenesis, where it is required to release the stem-loop intermediate from primary (pri)-miRNA transcripts. However, it can also cleave stem-loops embedded within messenger (m)RNAs. This destabilizes the mRNA causing target gene repression and appears to occur primarily in stem cells. While pri-miRNA stem-loops have been extensively studied, such non-canonical substrates of Drosha have yet to be characterized in detail. In this study, we employed high-throughput sequencing to capture all polyA-tailed RNAs that are cleaved by Drosha in mouse embryonic stem cells (ESCs) and compared the features of non-canonical versus miRNA stem-loop substrates. mRNA substrates are less efficiently processed than miRNA stem-loops. Sequence and structural analyses revealed that these mRNA substrates are also less stable and more likely to fold into alternative structures than miRNA stem-loops. Moreover, they lack the sequence and structural motifs found in miRNA stem-loops that are required for precise cleavage. Notably, we discovered a non-canonical Drosha substrate that is cleaved in an inverse manner, which is a process that is normally inhibited by features in miRNA stem-loops. Our study thus provides valuable insights into the recognition of non-canonical targets by Drosha.
RNase III 酶 Drosha 在 microRNA (miRNA) 生物发生中起着核心作用,它需要从初级 (pri)-miRNA 转录本中释放茎环中间体。然而,它也可以切割嵌入信使 (m)RNA 中的茎环。这会使 mRNA 不稳定,导致靶基因抑制,而且似乎主要发生在干细胞中。虽然 pri-miRNA 茎环已经得到了广泛的研究,但 Drosha 的这种非典型底物尚未得到详细表征。在这项研究中,我们采用高通量测序技术捕获了在小鼠胚胎干细胞 (ESC) 中被 Drosha 切割的所有聚 A 尾 RNA,并比较了非典型底物与 miRNA 茎环底物的特征。mRNA 底物的加工效率低于 miRNA 茎环。序列和结构分析表明,这些 mRNA 底物比 miRNA 茎环更不稳定,更有可能折叠成替代结构。此外,它们缺乏 miRNA 茎环中所需的精确切割序列和结构模体。值得注意的是,我们发现了一种非典型的 Drosha 底物,它以相反的方式被切割,而 miRNA 茎环中的特征通常会抑制这种切割过程。因此,我们的研究为 Drosha 对非典型靶标的识别提供了有价值的见解。