Direct Phosphorylation of SRC Homology 3 Domains by Tyrosine Kinase Receptors Disassembles Ligand-Induced Signaling Networks

酪氨酸激酶受体直接磷酸化SRC同源性3结构域可解离配体诱导的信号网络

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作者:Ugo Dionne,François J M Chartier,Yossef López de Los Santos,Noémie Lavoie,David N Bernard,Sara L Banerjee,François Otis,Kévin Jacquet,Michel G Tremblay,Mani Jain,Sylvie Bourassa,Gerald D Gish,Jean-Philippe Gagné,Guy G Poirier,Patrick Laprise,Normand Voyer,Christian R Landry,Nicolas Doucet,Nicolas Bisson

Abstract

Phosphotyrosine (pTyr) signaling has evolved into a key cell-to-cell communication system. Activated receptor tyrosine kinases (RTKs) initiate several pTyr-dependent signaling networks by creating the docking sites required for the assembly of protein complexes. However, the mechanisms leading to network disassembly and its consequence on signal transduction remain essentially unknown. We show that activated RTKs terminate downstream signaling via the direct phosphorylation of an evolutionarily conserved Tyr present in most SRC homology (SH) 3 domains, which are often part of key hub proteins for RTK-dependent signaling. We demonstrate that the direct EPHA4 RTK phosphorylation of adaptor protein NCK SH3s at these sites results in the collapse of signaling networks and abrogates their function. We also reveal that this negative regulation mechanism is shared by other RTKs. Our findings uncover a conserved mechanism through which RTKs rapidly and reversibly terminate downstream signaling while remaining in a catalytically active state on the plasma membrane.

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