Coronavirus papain-like protease antagonizes innate immunity by cleaving Importin α1 to disrupt nuclear transport
Liao, Y.; Wang, J.; Xue, W.; Sun, Y.; Tan, L.; Song, C.; Qiu, X.; Ding, C.
Show abstract
The Importin family, as key mediators of nucleocytoplasmic transport, represents a common target for viral immune evasion. However, whether coronaviruses directly manipulate Importin to disrupt nuclear trafficking and suppress antiviral immunity has remained unclear. In this study, we identify a previously unrecognized mechanism by which coronaviruses from all four genera subvert host innate immunity through the proteolytic inactivation of Importin 1, a key mediator of nuclear import of cargo proteins. We demonstrate that the membrane-associated papain-like protease (PLpro-TM) directly cleaves Importin 1 at specific glycine residues, G129 for PEDV and IBV PLpro, and G119 for MHV and PDCoV PLpro, thereby disrupting its nuclear import function. This cleavage impairs the nuclear translocation of multiple transcription factors (IRF3, STAT1, STAT2, and p65) and suppresses the expression of downstream antiviral genes, including IFN-{beta} and IFN-stimulated genes (ISGs). Importantly, cleavage-resistant mutants of Importin 1 (G129A or G119A) restore nuclear import capability and rescue IFN-{beta} signaling. Consequently, they exert a more potent inhibitory effect on viral replication than the wild-type Importin 1, fulfilling an antiviral role. Our work establishes PLpro-TM-mediated cleavage of Importin 1 as a conserved immune evasion strategy across coronaviruses and highlights this interaction as a potential target for broad-spectrum antiviral intervention. Author summaryThe nuclear transport of transcription factors is a critical checkpoint for the initiation of innate antiviral immunity. Here, we identify the PLpro-TM protein as a pan-coronavirus antagonist of nucleocytoplasmic trafficking and innate immune response. We demonstrate that PLpro-TM from four distinct coronavirus genera directly cleaves Importin 1 at specific glycine residues, thereby disabling its ability to mediate the nuclear import of key transcription factors and subsequent transcription of anti-viral genes. This work reveals a previously unrecognized, evolutionarily conserved immune evasion strategy shared across , {beta}, {gamma}, and {delta} coronaviruses. By uncovering the proteolytic inactivation of Importin 1 targeting by PLpro-TM, our findings not only resolve a long-standing question about how coronaviruses disrupt nuclear trafficking, but also establish PLpro-TM and Importin 1 as promising targets for the development of broad-spectrum antiviral therapeutics against current and emerging coronaviruses.
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