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尿苷酸化途径在Lin28B阻断let-7微小RNA生物合成过程中的作用。

A role of uridylation pathway for blockade of let-7 microRNA biogenesis by Lin28B.

作者信息

Suzuki Hiroshi I, Katsura Akihiro, Miyazono Kohei

机构信息

David H. Koch Institute for Integrative Cancer Research, Massachusetts Institute of Technology, Cambridge, Massachusetts, USA.

Department of Molecular Pathology, Graduate School of Medicine, The University of Tokyo, Tokyo, Japan.

出版信息

Cancer Sci. 2015 Sep;106(9):1174-81. doi: 10.1111/cas.12721. Epub 2015 Jul 14.

Abstract

The precise control of microRNA (miRNA) biosynthesis is crucial for gene regulation. Lin28A and Lin28B are selective inhibitors of biogenesis of let-7 miRNAs involved in development and tumorigenesis. Lin28A selectively inhibits let-7 biogenesis through cytoplasmic uridylation of precursor let-7 by TUT4 terminal uridyl transferase and subsequent degradation by Dis3l2 exonuclease. However, a role of this uridylation pathway remains unclear in let-7 blockade by Lin28B, a paralog of Lin28A, while Lin28B is reported to engage a distinct mechanism in the nucleus to suppress let-7. Here we revisit a functional link between Lin28B and the uridylation pathway with a focus on let-7 metabolism in cancer cells. Both Lin28A and Lin28B interacted with Dis3l2 in the cytoplasm, and silencing of Dis3l2 upregulated uridylated pre-let-7 in both Lin28A- and Lin28B-expressing cancer cell lines. In addition, we found that amounts of let-7 precursors influenced intracellular localization of Lin28B. Furthermore, we found that MCPIP1 (Zc3h12a) ribonuclease was also involved in degradation of both non-uridylated and uridylated pre-let-7. Cancer transcriptome analysis showed association of expression levels of Lin28B and uridylation pathway components, TUT4 and Dis3l2, in various human cancer cells and hepatocellular carcinoma. Collectively, these results suggest that cytoplasmic uridylation pathway actively participates in blockade of let-7 biogenesis by Lin28B.

摘要

微小RNA(miRNA)生物合成的精确调控对于基因调节至关重要。Lin28A和Lin28B是参与发育和肿瘤发生的let-7 miRNA生物合成的选择性抑制剂。Lin28A通过TUT4末端尿苷酰转移酶对前体let-7进行细胞质尿苷化以及随后由Dis3l2核酸外切酶进行降解来选择性抑制let-7生物合成。然而,在Lin28B(Lin28A的旁系同源物)对let-7的阻断中,这种尿苷化途径的作用仍不清楚,而据报道Lin28B在细胞核中采用不同的机制来抑制let-7。在此,我们重新审视Lin28B与尿苷化途径之间的功能联系,重点关注癌细胞中的let-7代谢。Lin28A和Lin28B都在细胞质中与Dis3l2相互作用,并且在表达Lin28A和Lin28B的癌细胞系中,Dis3l2的沉默均上调了尿苷化的前体let-7。此外,我们发现let-7前体的量影响Lin28B的细胞内定位。此外,我们发现MCPIP1(Zc3h12a)核糖核酸酶也参与非尿苷化和尿苷化前体let-7的降解。癌症转录组分析显示,在各种人类癌细胞和肝细胞癌中,Lin28B的表达水平与尿苷化途径成分TUT4和Dis3l2相关。总体而言,这些结果表明细胞质尿苷化途径积极参与Lin28B对let-7生物合成的阻断。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f6b0/4582986/ca0240ce1588/cas0106-1174-f1.jpg

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