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RPM-1 regulates axon termination by affecting growth cone collapse and microtubule stability.


ABSTRACT: Axon termination is essential for efficient and accurate nervous system construction. At present, relatively little is known about how growth cone collapse occurs prior to axon termination in vivo Using the mechanosensory neurons of C. elegans, we found collapse prior to axon termination is protracted, with the growth cone transitioning from a dynamic to a static state. Growth cone collapse prior to termination is facilitated by the signaling hub RPM-1. Given the prominence of the cytoskeleton in growth cone collapse, we assessed the relationship between RPM-1 and regulators of actin dynamics and microtubule stability. Our results reveal several important findings about how axon termination is orchestrated: (1) RPM-1 functions in parallel to RHO-1 and CRMP/UNC-33, but is supp

SUBMITTER: Borgen MA 

PROVIDER: S-EPMC5769622 | biostudies-literature | 2017 Dec

REPOSITORIES: biostudies-literature

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