Assessment of Kinome-wide Activity Remodeling Upon Picornavirus Infection

Publication date

2024-05

Authors

Veth, Tim S.ISNI 0000000507779851
Nouwen, LonnekeISNI 0000000524423515
Zwaagstra, MarleenISNI 0000000493076986
Lyoo, HeyrhyoungISNI 0000000492805278
Wierenga, Kathryn A
Westendorp, BartORCID 0000-0003-1043-3638ISNI 0000000396403121
Altelaar, MaartenORCID 0000-0001-5093-5945ISNI 0000000393438329
Berkers, CeliaISNI 000000038703060X
van Kuppeveld, Frank J MISNI 0000000369420196
Heck, Albert J RORCID 0000-0002-2405-4404ISNI 0000000393921118

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Advisors

Supervisors

Document Type

Article
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License

cc_by_nc_nd

Abstract

Picornaviridae represent a large family of single-stranded positive RNA viruses of which different members can infect both humans and animals. These include the enteroviruses (e.g., poliovirus, coxsackievirus, and rhinoviruses) as well as the cardioviruses (e.g., encephalomyocarditis virus). Picornaviruses have evolved to interact with, use, and/or evade cellular host systems to create the optimal environment for replication and spreading. It is known that viruses modify kinase activity during infection, but a proteome-wide overview of the (de)regulation of cellular kinases during picornavirus infection is lacking. To study the kinase activity landscape during picornavirus infection, we here applied dedicated targeted mass spectrometry-based assays covering ~40% of the human kinome. Our data show that upon infection, kinases of the MAPK pathways become activated (e.g., ERK1/2, RSK1/2, JNK1/2/3, and p38), while kinases involved in regulating the cell cycle (e.g., CDK1/2, GWL, and DYRK3) become inactivated. Additionally, we observed the activation of CHK2, an important kinase involved in the DNA damage response. Using pharmacological kinase inhibitors, we demonstrate that several of these activated kinases are essential for the replication of encephalomyocarditis virus. Altogether, the data provide a quantitative understanding of the regulation of kinome activity induced by picornavirus infection, providing a resource important for developing novel antiviral therapeutic interventions.

Keywords

Analytical Chemistry, Molecular Biology, Biochemistry, SDG 3 - Good Health and Well-being

Citation

Veth, T S, Nouwen, L V, Zwaagstra, M, Lyoo, H, Wierenga, K A, Westendorp, B, Altelaar, M A F M, Berkers, C, van Kuppeveld, F J M & Heck, A J R 2024, 'Assessment of Kinome-wide Activity Remodeling Upon Picornavirus Infection', Molecular and Cellular Proteomics, vol. 23, no. 5, 100757. https://doi.org/10.1016/j.mcpro.2024.100757