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Essential role of Hrs in endocytic recycling of full-length TrkB receptor but not its isoform TrkB.T1.


ABSTRACT: Brain-derived neurotrophic factor (BDNF) signaling through its receptor, TrkB, modulates survival, differentiation, and synaptic activity of neurons. Both full-length TrkB (TrkB-FL) and its isoform T1 (TrkB.T1) receptors are expressed in neurons; however, whether they follow the same endocytic pathway after BDNF treatment is not known. In this study we report that TrkB-FL and TrkB.T1 receptors traverse divergent endocytic pathways after binding to BDNF. We provide evidence that in neurons TrkB.T1 receptors predominantly recycle back to the cell surface by a "default" mechanism. However, endocytosed TrkB-FL receptors recycle to a lesser extent in a hepatocyte growth factor-regulated tyrosine kinase substrate (Hrs)-dependent manner which relies on its tyrosine kinase activity. The distinct role of Hrs in promoting recycling of internalized TrkB-FL receptors is independent of its ubiquitin-interacting motif. Moreover, Hrs-sensitive TrkB-FL recycling plays a role in BDNF-induced prolonged mitogen-activated protein kinase (MAPK) activation. These observations provide evidence for differential postendocytic sorting of TrkB-FL and TrkB.T1 receptors to alternate intracellular pathways.

SUBMITTER: Huang SH 

PROVIDER: S-EPMC2685694 | biostudies-literature | 2009 May

REPOSITORIES: biostudies-literature

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Essential role of Hrs in endocytic recycling of full-length TrkB receptor but not its isoform TrkB.T1.

Huang Shu-Hong SH   Zhao Ling L   Sun Zong-Peng ZP   Li Xue-Zhi XZ   Geng Zhao Z   Zhang Kai-Di KD   Chao Moses V MV   Chen Zhe-Yu ZY  

The Journal of biological chemistry 20090407 22


Brain-derived neurotrophic factor (BDNF) signaling through its receptor, TrkB, modulates survival, differentiation, and synaptic activity of neurons. Both full-length TrkB (TrkB-FL) and its isoform T1 (TrkB.T1) receptors are expressed in neurons; however, whether they follow the same endocytic pathway after BDNF treatment is not known. In this study we report that TrkB-FL and TrkB.T1 receptors traverse divergent endocytic pathways after binding to BDNF. We provide evidence that in neurons TrkB.T  ...[more]

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