Interdependence between EGFR and Phosphatases Spatially Established by Vesicular Dynamics Generates a Growth Factor Sensing and Responding Network

EGFR与磷酸酶之间通过囊泡动力学在空间上建立的相互依赖性,生成了一个生长因子感知和响应网络。

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作者:Angel Stanoev ,Amit Mhamane ,Klaus C Schuermann ,Hernán E Grecco ,Wayne Stallaert ,Martin Baumdick ,Yannick Brüggemann ,Maitreyi S Joshi ,Pedro Roda-Navarro ,Sven Fengler ,Rabea Stockert ,Lisaweta Roßmannek ,Jutta Luig ,Aneta Koseska ,Philippe I H Bastiaens

Abstract

The proto-oncogenic epidermal growth factor receptor (EGFR) is a tyrosine kinase whose sensitivity to growth factors and signal duration determines cellular behavior. We resolve how EGFR's response to epidermal growth factor (EGF) originates from dynamically established recursive interactions with spatially organized protein tyrosine phosphatases (PTPs). Reciprocal genetic PTP perturbations enabled identification of receptor-like PTPRG/J at the plasma membrane and ER-associated PTPN2 as the major EGFR dephosphorylating activities. Imaging spatial-temporal PTP reactivity revealed that vesicular trafficking establishes a spatially distributed negative feedback with PTPN2 that determines signal duration. On the other hand, single-cell dose-response analysis uncovered a reactive oxygen species-mediated toggle switch between autocatalytically activated monomeric EGFR and the tumor suppressor PTPRG that governs EGFR's sensitivity to EGF. Vesicular recycling of monomeric EGFR unifies the interactions with these PTPs on distinct membrane systems, dynamically generating a network architecture that can sense and respond to time-varying growth factor signals. Keywords: EGFR phosphatome identification; autocatalysis; dynamic organization; dynamic systems theory; functional imaging; growth factor sensing; in situ reactivity of phosphatases; quantifiable genetic perturbations; spatial-temporal; vesicular trafficking.

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