Grb7 protein stability modulated by pin1 in association with cell cycle progression

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Abstract

Growth factor receptor bound protein-7 (Grb7) is a multi-domain adaptor protein that is co-opted by numerous tyrosine kinases involved in various cellular signaling and functions. The molecular mechanisms underlying the regulation of Grb7 remain unclear. Here, we revealed a novel negative post-translational regulation of Grb7 by the peptidylprolyl cis/trans isomerase, Pin1. Our data show that phosphorylation of Grb7 protein on the Ser194-Pro motif by c-Jun N-terminal kinase facilitates its binding with the WW domain of Pin1. Subsequently, Grb7 is degraded by the ubiquitin- and proteasome-dependent proteolytic pathway. Indeed, we found that Pin1 exerts its peptidyl-prolyl cis/trans isomerase activity in the modulation of Grb7 protein stability in regulation of cell cycle progression at the G2-M phase. This study illustrates a novel regulatory mechanism in modulating Grb7-mediated signaling, which may take part in pathophysiological consequences.

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Tai, Y. L., Tung, L. H., Lin, Y. C., Lu, P. J., Chu, P. Y., Wang, M. Y., … Shen, T. L. (2016). Grb7 protein stability modulated by pin1 in association with cell cycle progression. PLoS ONE, 11(9). https://doi.org/10.1371/journal.pone.0163617

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