Phosphoregulation of the oncogenic protein regulator of cytokinesis 1 (PRC1) by the atypical CDK16/CCNY complex

Author

Hernández Ortega, Sara

Sánchez Botet, Abril

Quandt Herrera, Eva

Masip, Núria

Gasa Colom, Laura

Verde, Gaetano

Jiménez Jiménez, Javier

Levin, Rebecca

Rugatanira, Florentine U.

Burlingame, Alma L.

Wolfgeher, Donald

P.C. Ribeiro, Mariana

Kron, Stephen J.

M. Shokat, Kevan

Clotet Erra, Josep

Publication date

2019



Abstract

CDK16 (also known as PCTAIRE1 or PCTK1) is an atypical member of the cyclin-dependent kinase (CDK) family that forms an active complex with cyclin Y (CCNY). Although both proteins have been recently implicated in cancer pathogenesis, it is still unclear how the CDK16/CCNY complex exerts its biological activity. To understand the CDK16/CCNY network, we used complementary proteomic approaches to identify potential substrates of this complex. We identified several candidates implicating the CDK16/CCNY complex in cytoskeletal dynamics, and we focused on the microtubule-associated protein regulator of cytokinesis (PRC1), an essential protein for cell division that organizes antiparallel microtubules and whose deregulation may drive genomic instability in cancer. Using analog-sensitive (AS) CDK16 generated by CRISPR-Cas9 mutagenesis in 293T cells, we found that specific inhibition of CDK16 induces PRC1 dephosphorylation at Thr481 and delocalization to the nucleus during interphase. The observation that CDK16 inhibition and PRC1 downregulation exhibit epistatic effects on cell viability confirms that these proteins can act through a single pathway. In conclusion, we identified PRC1 as the first substrate of the CDK16/CCNY complex and demonstrated that the proliferative function of CDK16 is mediated by PRC1 phosphorylation. As CDK16 is emerging as a critical node in cancer, our study reveals novel potential therapeutic targets.

Document Type

Article

Document version

Accepted version

Language

English

CDU Subject

616.3 - Pathology of the digestive system. Complaints of the alimentary canal

Subjects and keywords

Phosphoregulation; Fosforegulació; Fosforegulación; cytokinesis 1; oncogenic protein regulator; regulador de proteïnes oncogènic; regulador de proteínas oncogénico

Pages

17

Publisher

Experimental and molecular medicine

Note

This work was supported by funding from the Spanish Government, MINECO (grant ref BFU 2013-44189-P) and the Fundació La Marató de TV3 (project number 20131010). We wish to acknowledge Marta Pérez, Dylan Beckwith and Sahar Steffany for technical support.

Grant Agreement Number

info:eu-repo/grantAgreement/ES/MINECO/BFU2013-44189-P

Rights

https://creativecommons.org/licenses/by/4.0/

https://creativecommons.org/licenses/by/4.0/

Attribution-NonCommercial-NoDerivatives 4.0 International

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