Author: Selkrig, Joel; Stanifer, Megan; Mateus, André; Mitosch, Karin; Barrioâ€Hernandez, Inigo; Rettel, Mandy; Kim, Heeyoung; Voogdt, Carlos G P; Walch, Philipp; Kee, Carmon; Kurzawa, Nils; Stein, Frank; Potel, Clément; Jarzab, Anna; Kuster, Bernhard; Bartenschlager, Ralf; Boulant, Steeve; Beltrao, Pedro; Typas, Athanasios; Savitski, Mikhail M
Title: SARSâ€CoVâ€2 infection remodels the host protein thermal stability landscape Cord-id: lbv7bo0r Document date: 2021_2_16
ID: lbv7bo0r
Snippet: The severe acute respiratory syndrome coronavirus 2 (SARSâ€CoVâ€2) is a global threat to human health and has compromised economic stability. In addition to the development of an effective vaccine, it is imperative to understand how SARSâ€CoVâ€2 hijacks host cellular machineries on a systemâ€wide scale so that potential hostâ€directed therapies can be developed. In situ proteomeâ€wide abundance and thermal stability measurements using thermal proteome profiling (TPP) can inform on global
Document: The severe acute respiratory syndrome coronavirus 2 (SARSâ€CoVâ€2) is a global threat to human health and has compromised economic stability. In addition to the development of an effective vaccine, it is imperative to understand how SARSâ€CoVâ€2 hijacks host cellular machineries on a systemâ€wide scale so that potential hostâ€directed therapies can be developed. In situ proteomeâ€wide abundance and thermal stability measurements using thermal proteome profiling (TPP) can inform on global changes in protein activity. Here we adapted TPP to high biosafety conditions amenable to SARSâ€CoVâ€2 handling. We discovered pronounced temporal alterations in host protein thermostability during infection, which converged on cellular processes including cell cycle, microtubule and RNA splicing regulation. Pharmacological inhibition of host proteins displaying altered thermal stability or abundance during infection suppressed SARSâ€CoVâ€2 replication. Overall, this work serves as a framework for expanding TPP workflows to globally important human pathogens that require high biosafety containment and provides deeper resolution into the molecular changes induced by SARSâ€CoVâ€2 infection.
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