Literature DB >> 26644181

PTP-PEST controls EphA3 activation and ephrin-induced cytoskeletal remodelling.

Mariam Mansour1, Eva Nievergall1, Kristina Gegenbauer1, Carmen Llerena1, Lakmali Atapattu1, Maxime Hallé2, Michel L Tremblay2, Peter W Janes3, Martin Lackmann1.   

Abstract

Eph receptors and their corresponding membrane-bound ephrin ligands regulate cell positioning and establish tissue patterns during embryonic and oncogenic development. Emerging evidence suggests that assembly of polymeric Eph signalling clusters relies on cytoskeletal reorganisation and underlies regulation by protein tyrosine phosphatases (PTPs). PTP-PEST (also known as PTPN12) is a central regulator of actin cytoskeletal dynamics. Here, we demonstrate that an N-terminal fragment of PTP-PEST, generated through an ephrinA5-triggered and spatially confined cleavage mediated by caspase-3, attenuates EphA3 receptor activation and its internalisation. Isolation of EphA3 receptor signalling clusters within intact plasma membrane fragments obtained by detergent-free cell fractionation reveals that stimulation of cells with ephrin triggers effective recruitment of this catalytically active truncated form of PTP-PEST together with key cytoskeletal and focal adhesion proteins. Importantly, modulation of actin polymerisation using pharmacological and dominant-negative approaches affects EphA3 phosphorylation in a similar manner to overexpression of PTP-PEST. We conclude that PTP-PEST regulates EphA3 activation both by affecting cytoskeletal remodelling and through its direct action as a PTP controlling EphA3 phosphorylation, indicating its multifaceted regulation of Eph signalling.
© 2016. Published by The Company of Biologists Ltd.

Entities:  

Keywords:  Actin cytoskeleton; Caspase cleavage; Eph tyrosine kinase; EphA3; PTP-PEST

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Year:  2015        PMID: 26644181     DOI: 10.1242/jcs.174490

Source DB:  PubMed          Journal:  J Cell Sci        ISSN: 0021-9533            Impact factor:   5.285


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