B-Raf and CRHR1 Internalization Mediate Biphasic ERK1/2 Activation by CRH in Hippocampal HT22 Cells

Author:

Bonfiglio Juan J.12,Inda Carolina12,Senin Sergio1,Maccarrone Giuseppina3,Refojo Damián3,Giacomini Damiana2,Turck Christoph W.3,Holsboer Florian3,Arzt Eduardo12,Silberstein Susana12

Affiliation:

1. Instituto de Investigación en Biomedicina de Buenos Aires (J.J.B., C.I., S.S., E.A., S.S.), Consejo Nacional de Investigaciones Científicas y Técnicas, Partner Institute of the Max Planck Society, Godoy Cruz 2390, C1425FQA, Buenos Aires, Argentina;

2. Departamento de Fisiología, Biología Molecular y Celular (J.J.B., C.I., D.G., E.A., S.S.), Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, 1428 Buenos Aires, Argentina;

3. Max Planck Institute of Psychiatry (G.M., D.R., C.W.T., F.H.), 80804 Munich, Germany

Abstract

AbstractCRH is a key regulator of neuroendocrine, autonomic, and behavioral response to stress. CRH-stimulated CRH receptor 1 (CRHR1) activates ERK1/2 depending on intracellular context. In a previous work, we demonstrated that CRH activates ERK1/2 in limbic areas of the mouse brain (hippocampus and basolateral amygdala). ERK1/2 is an essential mediator of hippocampal physiological processes including emotional behavior, synaptic plasticity, learning, and memory. To elucidate the molecular mechanisms by which CRH activates ERK1/2 in hippocampal neurons, we used the mouse hippocampal cell line HT22. We document for the first time that ERK1/2 activation in response to CRH is biphasic, involving a first cAMP- and B-Raf–dependent early phase and a second phase that critically depends on CRHR1 internalization and β-arrestin2. By means of mass-spectrometry–based screening, we identified B-Raf–associated proteins that coimmunoprecipitate with endogenous B-Raf after CRHR1 activation. Using molecular and pharmacological tools, the functional impact of selected B-Raf partners in CRH-dependent ERK1/2 activation was dissected. These results indicate that 14-3-3 proteins, protein kinase A, and Rap1, are essential for early CRH-induced ERK1/2 activation, whereas dynamin and vimentin are required for the CRHR1 internalization-dependent phase. Both phases of ERK1/2 activation depend on calcium influx and are affected by calcium/calmodulin-dependent protein kinase II inactivation. Thus, this report describes the dynamics and biphasic nature of ERK1/2 activation downstream neuronal CRHR1 and identifies several new critical components of the CRHR1 signaling machinery that selectively controls the early and late phases of ERK1/2 activation, thus providing new potential therapeutic targets for stress-related disorders.

Publisher

The Endocrine Society

Subject

Endocrinology,Molecular Biology,General Medicine

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