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Unbiased cleavage site prediction uncovers viral antagonism of host innate immunity by SARS-CoV-2 3C-like protease
Nora Yucel, Silvia Marchiano, Evan Tchelepi, Germana Paterlini, Ivan A. Kuznetsov, Kristina Li, Quentin McAfee, Nehaar Nimmagadda, Andy Ren, Sam Shi, Alyssa Grogan, Aikaterini Kontrogianni-Konstantopoulos, Charles Murry, Zoltan Arany
Nora Yucel, Silvia Marchiano, Evan Tchelepi, Germana Paterlini, Ivan A. Kuznetsov, Kristina Li, Quentin McAfee, Nehaar Nimmagadda, Andy Ren, Sam Shi, Alyssa Grogan, Aikaterini Kontrogianni-Konstantopoulos, Charles Murry, Zoltan Arany
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Research Article COVID-19 Virology

Unbiased cleavage site prediction uncovers viral antagonism of host innate immunity by SARS-CoV-2 3C-like protease

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Abstract

How SARS-CoV-2 causes a wide range of clinical manifestations and disease severity remains poorly understood. SARS-CoV-2 encodes 2 proteases (3CLPro and PLPro), vital for viral production, but also promiscuous with respect to host protein targets. Pharmacological inhibition of 3CLPro markedly reduced hospitalization and death in Phase 2/3 clinical studies. Here, we develop a bioinformatic algorithm, leveraging experimental data from SARS-CoV, to predict host cleavage targets of 3CLPro. We capture targets of 3CLPro described previously for SARS-CoV-2, as well as thousands of putative targets. We validate numerous targets cleaved during infection, including the giant sarcomeric protein obscurin and the innate immune protein OAS1. A long form of OAS1, p46, has been associated in numerous GWAS studies with lesser COVID disease severity. We show that 3CLPro cleaves p46 OAS1 immediately upstream of a known prenylation domain, relocalizing OAS1 from subcellular membranes to the cytosol, rendering it akin to the nonprotective, cytosolic p42 isoform. Similar OAS1 relocalization occurs upon infection by SARS-CoV-2. Our data provide a high-throughput resource to identify putative host cleavage targets of 3CLPro and reveal a mechanism by which SARS-CoV-2 antagonizes host innate immunity in individuals with the protective p46 isoform of OAS1.

Authors

Nora Yucel, Silvia Marchiano, Evan Tchelepi, Germana Paterlini, Ivan A. Kuznetsov, Kristina Li, Quentin McAfee, Nehaar Nimmagadda, Andy Ren, Sam Shi, Alyssa Grogan, Aikaterini Kontrogianni-Konstantopoulos, Charles Murry, Zoltan Arany

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Figure 5

Obscurin degradation in SARS-COV2 infection.

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Obscurin degradation in SARS-COV2 infection.
(A) Western blots of WTC-11...
(A) Western blots of WTC-11c hPSC-CMs infected with SARS-CoV-2 at 5 MOI after 24, 48, and 72 hours. (B) Quantification of obscurin and myosin heavy chain 6 and 7. Intensity normalized first for ACTN2 (per blot), then normalized for T0 values of each cell type. Shown are n = 2 for each time point for 2 different hPSC-CMs cell lines (WTC-11c and H7) for a total of n = 4. Significance of normalized obscurin intensity compared with time 0 was calculated by 1-way ANOVA with Dunnett’s test for multiple comparisons. (C) Immunocytochemistry for obscurin in WTC-11c hPSC-CMs at 48 hours post-infection (HPI) with MOI 5 SARS-CoV-2. TNNT2 used as a counterstain for sarcomeres, and nucleocapsid staining performed to identify infected cells. Panels (left to right) show representative merged image, DAPI/TNNT/OBSCN overlay to emphasize sarcomeres, and DAPI/OBSCN only to highlight loss of OBSCN. Scale bar: 10 μm.

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