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Cdk1-mediated threonine phosphorylation of Sam68 modulates its RNA binding, alternative splicing activity and cellular functions

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posted on 2023-05-15, 15:41 authored by Idir Malki, Inara Liepina, Nora Kogelnik, Hollie Watmuff, Sue Robinson, Adam Lightfoot, Oksana Gonchar, Andrew Bottrill, Andrew M Fry, Cyril Dominguez
Sam68, also known as KHDRBS1, is a member of the STAR family of proteins that directly link signal transduction with post-transcriptional gene regulation. Sam68 controls the alternative splicing of many oncogenic proteins and its role is modulated by post-translational modifications, including serine/threonine phosphorylation, that differ at various stages of the cell cycle. However, the molecular basis and mechanisms of these modulations remain largely unknown. Here, we combined mass spectrometry, nuclear magnetic resonance spectroscopy and cell biology techniques to provide a comprehensive post-translational modification mapping of Sam68 at different stages of the cell cycle in HEK293 and HCT116 cells. We established that Sam68 is specifically phosphorylated at T33 and T317 by Cdk1, and demonstrated that these phosphorylation events reduce the binding of Sam68 to RNA, control its cellular localization and reduce its alternative splicing activity, leading to a reduction in the induction of apoptosis and an increase in the proliferation of HCT116 cells.

Funding

Structural and functional investigations on the consequences of Sam68 post-translational modifications on alternative splicing regulation

Biotechnology and Biological Sciences Research Council

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Functional characterisation of Sam68 post-translational modifications

Biotechnology and Biological Sciences Research Council

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High Speed super-resolution confocal laser scanning microscope for sub-diffraction analysis at the multi-user Leicester Advanced Imaging Facility

Biotechnology and Biological Sciences Research Council

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A Coordinated Infrastructure for NMR in the Physical and Life Sciences: Upgrade of the Leicester 800MHz NMR for Structural Biology and Drug Discovery

Engineering and Physical Sciences Research Council

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History

Author affiliation

The Leicester Institute of Structural and Chemical Biology and Department of Molecular and Cell Biology, University of Leicester

Version

  • VoR (Version of Record)

Published in

NUCLEIC ACIDS RESEARCH

Volume

50

Issue

22

Pagination

13045–13062

Publisher

OXFORD UNIV PRESS

issn

0305-1048

eissn

1362-4962

Copyright date

2022

Available date

2023-05-15

Spatial coverage

England

Language

English

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