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CDE-1 通过结合 rRNA 的多聚尿嘧啶化和降解来抑制 ri siRNA 的产生。

CDE-1 suppresses the production of risiRNA by coupling polyuridylation and degradation of rRNA.

机构信息

National Science Center for Physical Sciences at Microscale Division of Molecular & Cell Biophysics, School of Life Sciences, University of Science and Technology of China, Hefei, 230027, Anhui, People's Republic of China.

School of Bioengineering, Huainan Normal University, Huainan, 232038, Anhui, People's Republic of China.

出版信息

BMC Biol. 2020 Sep 4;18(1):115. doi: 10.1186/s12915-020-00850-z.

Abstract

BACKGROUND

Modification of RNAs, particularly at the terminals, is critical for various essential cell processes; for example, uridylation is implicated in tumorigenesis, proliferation, stem cell maintenance, and immune defense against viruses and retrotransposons. Ribosomal RNAs can be regulated by antisense ribosomal siRNAs (risiRNAs), which downregulate pre-rRNAs through the nuclear RNAi pathway in Caenorhabditis elegans. However, the biogenesis and regulation of risiRNAs remain obscure. Previously, we showed that 26S rRNAs are uridylated at the 3'-ends by an unknown terminal polyuridylation polymerase before the rRNAs are degraded by a 3' to 5' exoribonuclease SUSI-1(ceDIS3L2).

RESULTS

Here, we found that CDE-1, one of the three C.elegans polyuridylation polymerases (PUPs), is specifically involved in suppressing risiRNA production. CDE-1 localizes to perinuclear granules in the germline and uridylates Argonaute-associated 22G-RNAs, 26S, and 5.8S rRNAs at the 3'-ends. Immunoprecipitation followed by mass spectrometry (IP-MS) revealed that CDE-1 interacts with SUSI-1(ceDIS3L2). Consistent with these results, both CDE-1 and SUSI-1(ceDIS3L2) are required for the inheritance of RNAi.

CONCLUSIONS

This work identified a rRNA surveillance machinery of rRNAs that couples terminal polyuridylation and degradation.

摘要

背景

RNA 的修饰,特别是在末端的修饰,对各种重要的细胞过程至关重要;例如,尿嘧啶化参与肿瘤发生、增殖、干细胞维持以及对病毒和逆转座子的免疫防御。核糖体 RNA 可以被反义核糖体 siRNA(risiRNA)调控,后者通过 Caenorhabditis elegans 中的核 RNAi 途径下调 pre-rRNA。然而,risiRNA 的生物发生和调控仍然不清楚。之前,我们表明,26S rRNA 在被 3' 到 5' 外切核糖核酸酶 SUSI-1(ceDIS3L2)降解之前,由未知的末端多聚尿嘧啶聚合酶在 3' 末端进行尿嘧啶化。

结果

在这里,我们发现三种 C.elegans 多聚尿嘧啶聚合酶(PUPs)之一的 CDE-1 特异性参与抑制 risiRNA 的产生。CDE-1 定位于生殖系中的核周颗粒中,并在 3' 末端尿嘧啶化 Argonaute 相关的 22G-RNAs、26S 和 5.8S rRNA。免疫沉淀结合质谱(IP-MS)表明 CDE-1 与 SUSI-1(ceDIS3L2)相互作用。与这些结果一致,CDE-1 和 SUSI-1(ceDIS3L2)都需要 RNAi 的遗传。

结论

这项工作鉴定了一种 rRNA 监控机制,它将末端多聚尿嘧啶化和降解偶联起来。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a7d/7472701/2a94892c6a5b/12915_2020_850_Fig1_HTML.jpg

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