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Ubiquitination switches EphA2 vesicular traffic from a continuous safeguard to a finite signalling mode

机译:泛素化将EphA2囊泡流量从连续保障模式切换为有限信号模式

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摘要

Autocatalytic phosphorylation of receptor tyrosine kinases (RTKs) enables diverse, context-dependent responses to extracellular signals but comes at the price of autonomous, ligand-independent activation. Using a conformational biosensor that reports on the kinase activity of the cell guidance ephrin receptor type-A (EphA2) in living cells, we observe that autonomous EphA2 activation is suppressed by vesicular recycling and dephosphorylation by protein tyrosine phosphatases 1B (PTP1B) near the pericentriolar recycling endosome. This spatial segregation of catalytically superior PTPs from RTKs at the plasma membrane is essential to preserve ligand responsiveness. Ligand-induced clustering, on the other hand, promotes phosphorylation of a c-Cbl docking site and ubiquitination of the receptor, thereby redirecting it to the late endosome/lysosome. We show that this switch from cyclic to unidirectional receptor trafficking converts a continuous suppressive safeguard mechanism into a transient ligand-responsive signalling mode.
机译:受体酪氨酸激酶(RTK)的自催化磷酸化可实现对细胞外信号的多种依赖于上下文的响应,但代价是自主的,不依赖配体的激活。使用报告生物活细胞中的细胞导向性ephrin受体A型(EphA2)激酶活性的构象生物传感器,我们观察到水泡中循环和去磷酸化被蛋白酪氨酸磷酸酶1B(PTP1B)抑制了附近EthA2的活化回收内体。质膜上RTK的催化优势PTP在空间上的分离对于保持配体响应性至关重要。另一方面,配体诱导的聚集促进了c-Cbl对接位点的磷酸化和受体的泛素化,从而将其重定向至晚期内体/溶酶体。我们表明,这种从循环向单向受体运输的转换将连续的抑制性保障机制转换为短暂的配体响应信号传导模式。

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