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末端尿嘧啶转移酶 7 通过控制 Regnase-1 mRNA 的尿嘧啶化和降解来调节 TLR4 触发的炎症。

Terminal uridyltransferase 7 regulates TLR4-triggered inflammation by controlling Regnase-1 mRNA uridylation and degradation.

机构信息

Institute of Molecular Medicine, National Taiwan University, Taipei, Taiwan.

Laboratory Animal Center, College of Medicine, National Taiwan University, Taipei, Taiwan.

出版信息

Nat Commun. 2021 Jun 29;12(1):3878. doi: 10.1038/s41467-021-24177-7.

Abstract

Different levels of regulatory mechanisms, including posttranscriptional regulation, are needed to elaborately regulate inflammatory responses to prevent harmful effects. Terminal uridyltransferase 7 (TUT7) controls RNA stability by adding uridines to its 3' ends, but its function in innate immune response remains obscure. Here we reveal that TLR4 activation induces TUT7, which in turn selectively regulates the production of a subset of cytokines, including Interleukin 6 (IL-6). TUT7 regulates IL-6 expression by controlling ribonuclease Regnase-1 mRNA (encoded by Zc3h12a gene) stability. Mechanistically, TLR4 activation causes TUT7 to bind directly to the stem-loop structure on Zc3h12a 3'-UTR, thereby promotes Zc3h12a uridylation and degradation. Zc3h12a from LPS-treated TUT7-sufficient macrophages possesses increased oligo-uridylated ends with shorter poly(A) tails, whereas oligo-uridylated Zc3h12a is significantly reduced in Tut7 cells after TLR4 activation. Together, our findings reveal the functional role of TUT7 in sculpting TLR4-driven responses by modulating mRNA stability of a selected set of inflammatory mediators.

摘要

不同层次的调控机制,包括转录后调控,对于精细调控炎症反应以防止有害影响是必要的。末端尿嘧啶转移酶 7(TUT7)通过在其 3' 端添加尿嘧啶来控制 RNA 的稳定性,但它在先天免疫反应中的功能尚不清楚。在这里,我们揭示 TLR4 激活诱导 TUT7,TUT7 反过来又选择性地调节一组细胞因子的产生,包括白细胞介素 6(IL-6)。TUT7 通过控制核糖核酸酶 Regnase-1 mRNA(由 Zc3h12a 基因编码)的稳定性来调节 IL-6 的表达。在机制上,TLR4 激活导致 TUT7 直接结合到 Zc3h12a 3'-UTR 上的茎环结构,从而促进 Zc3h12a 的尿嘧啶化和降解。来自 LPS 处理的 TUT7 充足的巨噬细胞的 Zc3h12a 具有更多的寡尿嘧啶化末端和较短的多 A 尾巴,而在 TLR4 激活后,Tut7 细胞中的寡尿嘧啶化 Zc3h12a 显著减少。总之,我们的研究结果揭示了 TUT7 通过调节一组选定的炎症介质的 mRNA 稳定性,在塑造 TLR4 驱动的反应中的功能作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f52d/8241994/f8606fc683d9/41467_2021_24177_Fig1_HTML.jpg

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