Covalent Aurora A regulation by the metabolic integrator coenzyme A

dc.contributor.author Tsuchiya, Yugo
dc.contributor.author Byrne, Dominic P.
dc.contributor.author Burgess, Selena G.
dc.contributor.author Bormann, Jenny
dc.contributor.author Baković, Jovana
dc.contributor.author Huang, Yueyang
dc.contributor.author Zhyvoloup, Alexander
dc.contributor.author Yu, Bess Yi Kun
dc.contributor.author Peak-Chew, Sew
dc.contributor.author Tran, Trang
dc.contributor.author Bellany, Fiona
dc.contributor.author Tabor, Alethea B.
dc.contributor.author Chan, AW Edith
dc.contributor.author Guruprasad, Lalitha
dc.contributor.author Garifulin, Oleg
dc.contributor.author Filonenko, Valeriy
dc.contributor.author Vonderach, Matthias
dc.contributor.author Ferries, Samantha
dc.contributor.author Eyers, Claire E.
dc.contributor.author Carroll, John
dc.contributor.author Skehel, Mark
dc.contributor.author Bayliss, Richard
dc.contributor.author Eyers, Patrick A.
dc.contributor.author Gout, Ivan
dc.date.accessioned 2022-03-27T08:33:49Z
dc.date.available 2022-03-27T08:33:49Z
dc.date.issued 2020-01-01
dc.description.abstract Aurora A kinase is a master mitotic regulator whose functions are controlled by several regulatory interactions and post-translational modifications. It is frequently dysregulated in cancer, making Aurora A inhibition a very attractive antitumor target. However, recently uncovered links between Aurora A, cellular metabolism and redox regulation are not well understood. In this study, we report a novel mechanism of Aurora A regulation in the cellular response to oxidative stress through CoAlation. A combination of biochemical, biophysical, crystallographic and cell biology approaches revealed a new and, to our knowledge, unique mode of Aurora A inhibition by CoA, involving selective binding of the ADP moiety of CoA to the ATP binding pocket and covalent modification of Cys290 in the activation loop by the thiol group of the pantetheine tail. We provide evidence that covalent CoA modification (CoAlation) of Aurora A is specific, and that it can be induced by oxidative stress in human cells. Oxidising agents, such as diamide, hydrogen peroxide and menadione were found to induce Thr 288 phosphorylation and DTT-dependent dimerization of Aurora A. Moreover, microinjection of CoA into fertilized mouse embryos disrupts bipolar spindle formation and the alignment of chromosomes, consistent with Aurora A inhibition. Altogether, our data reveal CoA as a new, rather selective, inhibitor of Aurora A, which locks this kinase in an inactive state via a “dual anchor” mechanism of inhibition that might also operate in cellular response to oxidative stress. Finally and most importantly, we believe that these novel findings provide a new rationale for developing effective and irreversible inhibitors of Aurora A, and perhaps other protein kinases containing appropriately conserved Cys residues.
dc.identifier.citation Redox Biology. v.28
dc.identifier.issn 22132317
dc.identifier.uri 10.1016/j.redox.2019.101318
dc.identifier.uri https://www.sciencedirect.com/science/article/abs/pii/S2213231719304264
dc.identifier.uri https://dspace.uohyd.ac.in/handle/1/10801
dc.title Covalent Aurora A regulation by the metabolic integrator coenzyme A
dc.type Journal. Article
dspace.entity.type
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