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成熟 microRNAs 在人核仁中的动态定位受外源遗传物质的影响。

Dynamic localisation of mature microRNAs in Human nucleoli is influenced by exogenous genetic materials.

机构信息

Departments of Biology and Chemistry, City University of Hong Kong, Hong Kong, China.

出版信息

PLoS One. 2013 Aug 6;8(8):e70869. doi: 10.1371/journal.pone.0070869. Print 2013.

Abstract

Although microRNAs are commonly known to function as a component of RNA-induced silencing complexes in the cytoplasm, they have been detected in other organelles, notably the nucleus and the nucleolus, of mammalian cells. We have conducted a systematic search for miRNAs in HeLa cell nucleoli, and identified 11 abundant miRNAs with a high level of nucleolar accumulation. Through in situ hybridisation, we have localised these miRNAs, including miR-191 and miR-484, in the nucleolus of a diversity of human and rodent cell lines. The nucleolar association of these miRNAs is resistant to various cellular stresses, but highly sensitive to the presence of exogenous nucleic acids. Introduction of both single- and double-stranded DNA as well as double stranded RNA rapidly induce the redistribution of nucleolar miRNAs to the cytoplasm. A similar change in subcellular distribution is also observed in cells infected with the influenza A virus. The partition of miRNAs between the nucleolus and the cytoplasm is affected by Leptomycin B, suggesting a role of Exportin-1 in the intracellular shuttling of miRNAs. This study reveals a previously unknown aspect of miRNA biology, and suggests a possible link between these small noncoding RNAs and the cellular management of foreign genetic materials.

摘要

尽管 microRNAs 通常被认为是细胞质中 RNA 诱导沉默复合物的组成部分,但它们也已在哺乳动物细胞的其他细胞器中被检测到,特别是在核仁和核仁中。我们已经对 HeLa 细胞核仁中的 microRNAs 进行了系统搜索,并鉴定出 11 种丰富的 microRNAs,它们在核仁中有高水平的积累。通过原位杂交,我们将这些 microRNAs(包括 miR-191 和 miR-484)定位在多种人类和啮齿动物细胞系的核仁中。这些 microRNAs 在核仁中的存在对各种细胞应激具有抗性,但对外源核酸的存在高度敏感。单链和双链 DNA 以及双链 RNA 的引入会迅速诱导核仁 microRNAs 重新分布到细胞质中。在感染流感 A 病毒的细胞中也观察到类似的亚细胞分布变化。Leptomycin B 会影响 microRNAs 在核仁与细胞质之间的分配,这表明 Exportin-1 在 microRNAs 的细胞内穿梭中发挥作用。这项研究揭示了 microRNA 生物学的一个先前未知的方面,并表明这些小非编码 RNA 与细胞对外源遗传物质的管理之间可能存在联系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cff3/3735495/e022145d94fb/pone.0070869.g001.jpg

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