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◇ bioRxiv2026-09-26· microbiology

Nsp3 Ubl1-orchestrated dephosphorylation of N protein promotes coronaviral subgenomic RNA synthesis

J. Zhu, C. Chiang, M. Gack

一句话结论

These findings uncover an unrecognized mechanism in which Nsp3-guided N dephosphorylation by PP1/{gamma} enables coronavirus subgenomic RNA replication and highlight a potentially targetable axis for antiviral intervention.

原始摘要(原文)
The coronavirus nucleocapsid (N) protein is indispensable for the viral lifecycle as part of the viral Replication-Transcription Complex together with Nsp3. Recent research demonstrated that phosphorylation of N by several host kinases intricately regulates its functions during infection. However, the mechanisms that control N dephosphorylation, and its physiological consequence, remain poorly understood. Here, we show that SARS-CoV-2 Nsp3 is a key orchestrator of N dephosphorylation by recruiting the phosphatase PP1/{gamma} via a conserved PP1-binding motif in the Ubl1 domain. Disruption of this motif abolishes N dephosphorylation and selectively impairs subgenomic RNA synthesis. Comparative interactome proteomics analysis of phospho-mimic vs. phospho-deficient N, together with functional validation, revealed that the host splicing factor SRSF1 cooperates with unphosphorylated N to promote subgenomic RNA transcription. These findings uncover an unrecognized mechanism in which Nsp3-guided N dephosphorylation by PP1/{gamma} enables coronavirus subgenomic RNA replication and highlight a potentially targetable axis for antiviral intervention.
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Nsp3 Ubl1-orchestrated dephosphorylation of N protein promotes coronaviral subgenomic RNA synthesis — 科研速览 Science Skim