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Updated: Sep 25, 2026

A Reporter Based Cellular Assay for Monitoring Splicing Efficiency
Published on: September 15, 2021
Splicing suppression alters the STING transcription start site to attenuate antiviral innate immunity
Jia Xu1, Qiuchang Liao1, Jiayin Wang1
1State Key Laboratory of Biocontrol, School of Ecology, Sun Yat-Sen University, Shenzhen 518107, China.
Abstract:
The cGAS (cyclic GMP-AMP synthase)-STING (Stimulator of interferon genes) pathway plays a central role in antiviral innate immunity in vertebrates. Recent studies have shown that invertebrates possess a related cGLR (cGAS-like receptor)-STING pathway. However, due to the lack of direct evidence demonstrating viral evasion of cGLR-STING-mediated immunity, the functional importance of cGLR-STING pathway in antiviral responses remains uncertain in invertebrates. Here, we show that an insect picorna-like virus CrPV (Cricket Paralysis virus) inhibits STING-mediated antiviral activity by altering the transcription start site of STING. Mechanistically, CrPV infection down-regulates several spliceosomal genes and disrupts pre-mRNA splicing. This splicing impairment is sufficient to stall RNA polymerase II in transcriptional initiation condensates, reduce global transcription efficiency, and reprogram the transcription start site of STING. Such a shift diverts STING expression from a functional antiviral isoform to a nonantiviral variant that partially suppresses STING activity, thereby disabling the cGLR-STING pathway. Our findings uncover an unconventional viral immune evasion strategy and an unexpected link between splicing suppression and STING-mediated antiviral response. Given the evolutionary conservation of splicing mechanisms and STING-like pathways, this mechanism may represent a broadly applicable regulatory principle in immune defense across species.
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