Article ID Journal Published Year Pages File Type
2039400 Cell Reports 2015 17 Pages PDF
Abstract

•CRMP2A, but not CRMP2B, is the dominant isoform of CRMP2 in distal axons•Pin1 specifically interacts with CDK5-phosphorylated CRMP2A in distal axons•Pin1 stabilizes CRMP2A to buffer growth cone collapse induced by low levels of Sema3A•Pin1 regulates Sema3A-driven axon guidance in embryonic development in vivo

SummaryAxon guidance relies on precise translation of extracellular signal gradients into local changes in cytoskeletal dynamics, but the molecular mechanisms regulating dose-dependent responses of growth cones are still poorly understood. Here, we show that during embryonic development in growing axons, a low level of Semaphorin3A stimulation is buffered by the prolyl isomerase Pin1. We demonstrate that Pin1 stabilizes CDK5-phosphorylated CRMP2A, the major isoform of CRMP2 in distal axons. Consequently, Pin1 knockdown or knockout reduces CRMP2A levels specifically in distal axons and inhibits axon growth, which can be fully rescued by Pin1 or CRMP2A expression. Moreover, Pin1 knockdown or knockout increases sensitivity to Sema3A-induced growth cone collapse in vitro and in vivo, leading to developmental abnormalities in axon guidance. These results identify an important isoform-specific function and regulation of CRMP2A in controlling axon growth and uncover Pin1-catalyzed prolyl isomerization as a regulatory mechanism in axon guidance.

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