PDCD10/CCM3 acts downstream of γ-Protocadherins to regulate neuronal survival

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Abstract

γ-Protocadherins (PCDH-γ) regulate neuronal survival in the vertebrate central nervous system. The molecular mechanisms of how PCDH-γ mediates this function are still not understood. In this study, we show that through their common cytoplasmic domain, different PCDH-γ isoforms interact with an intracellular adaptor protein named PDCD10 (programmed cell death 10). PDCD10 is also known as CCM3, a causative genetic defect for cerebral cavernous malformations in humans. Using RNAi-mediated knockdown, we demonstrate that PDCD10 is required for the occurrence of apoptosis upon PCDH-γ depletion in developing chicken spinal neurons. Moreover, overexpression of PDCD10 is sufficient to induce neuronal apoptosis. Taken together, our data reveal a novel function for PDCD10/CCM3, acting as a critical regulator of neuronal survival during development. © 2010 by The American Society for Biochemistry and Molecular Biology, Inc.

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Lin, C., Meng, S., Zhu, T., & Wang, X. (2010). PDCD10/CCM3 acts downstream of γ-Protocadherins to regulate neuronal survival. Journal of Biological Chemistry, 285(53), 41675–41685. https://doi.org/10.1074/jbc.M110.179895

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