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The small RNA mascRNA differentially regulates TLR-induced proinflammatory and antiviral responses
Tao Sun, Chunxue Wei, Daoyong Wang, Xuxu Wang, Jiao Wang, Yuqing Hu, Xiaohua Mao
Tao Sun, Chunxue Wei, Daoyong Wang, Xuxu Wang, Jiao Wang, Yuqing Hu, Xiaohua Mao
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Research Article Immunology

The small RNA mascRNA differentially regulates TLR-induced proinflammatory and antiviral responses

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Abstract

MALAT1-associated small cytoplasmic RNA (mascRNA) is a highly conserved transfer RNA–like (tRNA-like) noncoding RNA whose function remains largely unknown. We show here that this small RNA molecule played a role in the stringent control of TLR-mediated innate immune responses. mascRNA inhibited activation of NF-κB and mitogen-activated protein kinase (MAPK) signaling and the production of inflammatory cytokines in macrophages stimulated with LPS, a TLR4 ligand. Furthermore, exogenous mascRNA alleviated LPS-induced lung inflammation. However, mascRNA potentiated the phosphorylation of IRF3 and STAT1 and the transcription of IFN-related genes in response to the TLR3 ligand poly(I:C) both in vitro and in vivo. Mechanistically, mascRNA was found to enhance K48-linked ubiquitination and proteasomal degradation of TRAF6, thereby negatively regulating TLR-mediated MyD88-dependent proinflammatory signaling while positively regulating TRIF-dependent IFN signaling. Additionally, heterogeneous nuclear ribonucleoprotein H (hnRNP H) and hnRNP F were found to interact with mascRNA, promote its degradation, and contribute to the fine-tuning of TLR-triggered immune responses. Taken together, our data identify a dual role of mascRNA in both negative and positive regulation of innate immune responses.

Authors

Tao Sun, Chunxue Wei, Daoyong Wang, Xuxu Wang, Jiao Wang, Yuqing Hu, Xiaohua Mao

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Figure 6

mascRNA promotes poly(I:C)-induced antiviral but not inflammatory response in vivo.

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mascRNA promotes poly(I:C)-induced antiviral but not inflammatory respon...
Mice (n = 5 per group) were treated oropharyngeally with either pGV-NC or pGV-mascRNA complexed with in vivo jetPEI. Forty-eight hours after treatment, mice were challenged oropharyngeally with PBS or poly(I:C) (5 mg/kg). Six hours later, mice were sacrificed and subjected to functional analysis. (A) mascRNA abundance in the lungs determined by qPCR. (B) Ifnb mRNA expression in the lungs determined by qPCR. (C) IFN-β concentration in BALFs. (D) Expression of IFN-stimulated genes Ccl5, Ifit3, and Cxcl10 in the lungs determined by qPCR. (E) Expression of Tnf and Il6 in the lungs determined by qPCR. (F and G) Two randomly selected mice in each group challenged with PBS and all 5 mice in each group challenged with poly(I:C) were analyzed. Indicated proteins in the lungs were assessed by immunoblot (F), and fold change of phosphorylated proteins was normalized to β-actin and quantified by densitometric scanning of blots (G). (H) Representative histopathologies of lung sections stained with H&E (n = 5 per group). Original magnification, ×400. NC, negative control. Data shown in A–E and G are mean ± SEM of 5 biological replicates. *P < 0.05; **P < 0.01; ***P < 0.001 (2-tailed Student’s t test).

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