SLIRP promotes autoimmune diseases by amplifying antiviral signaling via positive feedback regulation.

SLIRP 通过正反馈调节增强抗病毒信号,从而促进自身免疫性疾病的发生

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作者:Ku Doyeong, Yang Yewon, Park Youngran, Jang Daesong, Lee Namseok, Lee Yong-Ki, Lee Keonyong, Lee Jaeseon, Han Yeon Bi, Jang Soojin, Choi Se Rim, Ha You-Jung, Choi Yong Seok, Jeong Woo-Jin, Lee Yun Jong, Lee Kyung Jin, Cha Seunghee, Kim Yoosik
The abnormal innate immune response is a prominent feature underlying autoimmune diseases. One emerging factor that can trigger dysregulated immune activation is cytosolic mitochondrial double-stranded RNAs (mt-dsRNAs). However, the mechanism by which mt-dsRNAs stimulate immune responses remains poorly understood. Here, we discover SRA stem-loop interacting RNA binding protein (SLIRP) as a key amplifier of mt-dsRNA-triggered antiviral signals. In autoimmune diseases, SLIRP is commonly upregulated, and targeted knockdown of SLIRP dampens the interferon response. We find that the activation of melanoma differentiation-associated gene 5 (MDA5) by exogenous dsRNAs upregulates SLIRP, which then stabilizes mt-dsRNAs and promotes their cytosolic release to activate MDA5 further, augmenting the interferon response. Furthermore, the downregulation of SLIRP partially rescues the abnormal interferon-stimulated gene expression in autoimmune patients' primary cells and makes cells vulnerable to certain viral infections. Our study unveils SLIRP as a pivotal mediator of interferon response through positive feedback amplification of antiviral signaling.

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