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TGF-β inhibitor SB431542 suppresses SARS-CoV-2 replication through multistep inhibition

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dc.contributor.authorVerma, Assim
dc.contributor.authorKamboj, Himanshu
dc.contributor.authorKumar, Garvit
dc.contributor.authorKhandelwal, Nitin
dc.contributor.authorMayer, Benjamin E.
dc.contributor.authorRathee, Jitender
dc.contributor.authorChander, Yogesh
dc.contributor.authorNokhwal, Alka
dc.contributor.authorDhanda, Shweta
dc.contributor.authorKumar, Ram
dc.contributor.authorDedar, Ramesh Kumar
dc.contributor.authorBejjanki, Sandeep Kumar
dc.contributor.authorParashar, Deepti
dc.contributor.authorPananghat, Gayathri
dc.contributor.authorTripathi, Bhupendra Nath
dc.contributor.authorThachamvally, Riyesh
dc.contributor.authorSharma, Shalini
dc.contributor.authorKumar, Naveen
dc.date.accessioned2026-02-02T14:26:12Z
dc.date.available2026-02-02T14:26:12Z
dc.date.createdwos2025-09-07
dc.date.issued2025
dc.description.abstractThe coronavirus disease 2019 (COVID-19) pandemic highlighted the critical need for broad-spectrum antivirals with high resistance barriers. Here, we demonstrate that SB431542, a selective TGF-β receptor I (ALK5) inhibitor, exhibits potent antiviral activity against severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) through unprecedented multitargeted mechanisms. Through comprehensive in vitro, isothermal titration calorimetry, and in silico analyses, we identified that SB431542 directly binds to SARS-CoV-2 ORF3a and disrupts its canonical function in inhibiting autophagosome-lysosome fusion. This interaction restored lysosomal acidification and normalized perinuclear LAMP-1 localization, significantly impairing virion assembly as evidenced by disrupted nucleocapsid-RNA association and reduced intracellular viral titers. Additionally, SB431542 downregulated the CLEAR network genes responsible for lysosomal biogenesis, further restricting viral egress pathways. Our temporal analyses revealed that at later infection stages (36–48 hours post-infection [hpi]), SARS-CoV-2 exploits TGF-β-induced lysosomal membrane permeabilization (LMP) and apoptosis for viral release—processes effectively inhibited by SB431542 through suppression of GADD45b and BAX expression. These multiple mechanisms resulted in an exceptional EC50 of 751.8 nM against SARS-CoV-2. In vivo efficacy was demonstrated in embryonated chicken eggs, where SB431542 conferred dose-dependent protection against lethal infectious bronchitis virus (IBV) challenge, with a favorable therapeutic index of 34.54. Remarkably, sequential passaging of SARS-CoV-2 for 50 generations under SB431542 selection pressure failed to generate resistant variants, contrasting sharply with the rapid resistance emergence typical of direct-acting antivirals. These findings establish SB431542 as a promising broad-spectrum coronavirus inhibitor with a unique triple-mechanism approach that simultaneously targets viral entry via TGF-β/Smad modulation, disrupts ORF3a-mediated lysosomal dysfunction affecting assembly, and attenuates TGF-β-induced apoptosis during late-stage infection, collectively imposing multiple selective constraints that impede escape mutation development.
dc.description.wosFundingTextThis work was supported by the Science and Engineering Research Board (SERB), the Department of Science and Technology, Government of India (grant number CVD/2020/000103 to N. Kumar), and the Indian Council of Agricultural Research (grant number NASF/ABA 8027/2020-21 to N. Kumar). The funders had no role in study design, data collection and analysis, decision to publish, or preparation of the manuscript.
dc.identifier.doi10.1128/jvi.00529-25
dc.identifier.issn0022-538X
dc.identifier.pmidMEDLINE:40879372
dc.identifier.urihttps://imec-publications.be/handle/20.500.12860/58767
dc.language.isoeng
dc.provenance.editstepusergreet.vanhoof@imec.be
dc.publisherAMER SOC MICROBIOLOGY
dc.source.beginpagee00529-25
dc.source.issue9
dc.source.journalJOURNAL OF VIROLOGY
dc.source.numberofpages25
dc.source.volume99
dc.subject.keywordsHOST-DIRECTED THERAPIES
dc.subject.keywordsINDUCED APOPTOSIS
dc.subject.keywordsAUTOPHAGY
dc.subject.keywordsPROTEIN
dc.subject.keywordsEXPRESSION
dc.subject.keywordsTGF-BETA-1
dc.subject.keywordsCELLS
dc.subject.keywordsMECHANISMS
dc.subject.keywordsLYSOSOMES
dc.subject.keywordsPATHOLOGY
dc.title

TGF-β inhibitor SB431542 suppresses SARS-CoV-2 replication through multistep inhibition

dc.typeJournal article
dspace.entity.typePublication
imec.internal.crawledAt2025-10-22
imec.internal.sourcecrawler
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