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A CaMKII? signaling pathway at the centrosome regulates dendrite patterning in the brain.


ABSTRACT: The protein kinase calcium/calmodulin-dependent kinase II (CaMKII) predominantly consists of the ? and ? isoforms in the brain. Although CaMKII? functions have been elucidated, the isoform-specific catalytic functions of CaMKII? have remained unknown. Using knockdown analyses in primary rat neurons and in the rat cerebellar cortex in vivo, we report that CaMKII? operates at the centrosome in a CaMKII?-independent manner to drive dendrite retraction and pruning. We also find that the targeting protein PCM1 (pericentriolar material 1) localizes CaMKII? to the centrosome. Finally, we uncover the E3 ubiquitin ligase Cdc20-APC (cell division cycle 20-anaphase promoting complex) as a centrosomal substrate of CaMKII?. CaMKII? phosphorylates Cdc20 at Ser51, which induces Cdc20 dispersion from the centrosome, thereby inhibiting centrosomal Cdc20-APC activity and triggering the transition from growth to retraction of dendrites. Our findings define a new, isoform-specific function for CaMKII? that regulates ubiquitin signaling at the centrosome and thereby orchestrates dendrite patterning, with important implications for neuronal connectivity in the brain.

SUBMITTER: Puram SV 

PROVIDER: S-EPMC3391735 | biostudies-literature | 2011 Jul

REPOSITORIES: biostudies-literature

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A CaMKIIβ signaling pathway at the centrosome regulates dendrite patterning in the brain.

Puram Sidharth V SV   Kim Albert H AH   Ikeuchi Yoshiho Y   Wilson-Grady Joshua T JT   Merdes Andreas A   Gygi Steven P SP   Bonni Azad A  

Nature neuroscience 20110703 8


The protein kinase calcium/calmodulin-dependent kinase II (CaMKII) predominantly consists of the α and β isoforms in the brain. Although CaMKIIα functions have been elucidated, the isoform-specific catalytic functions of CaMKIIβ have remained unknown. Using knockdown analyses in primary rat neurons and in the rat cerebellar cortex in vivo, we report that CaMKIIβ operates at the centrosome in a CaMKIIα-independent manner to drive dendrite retraction and pruning. We also find that the targeting pr  ...[more]

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