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Calpain-mediated cleavage of collapsin response mediator protein-2 drives acute axonal degeneration.


ABSTRACT: Axonal degeneration is a key initiating event in many neurological diseases. Focal lesions to axons result in a rapid disintegration of the perilesional axon by acute axonal degeneration (AAD) within several hours. However, the underlying molecular mechanisms of AAD are only incompletely understood. Here, we studied AAD in vivo through live-imaging of the rat optic nerve and in vitro in primary rat cortical neurons in microfluidic chambers. We found that calpain is activated early during AAD of the optic nerve and that calpain inhibition completely inhibits axonal fragmentation on the proximal side of the crush while it attenuates AAD on the distal side. A screening of calpain targets revealed that collapsin response mediator protein-2 (CRMP2) is a main downstream target of calpain activation in AAD. CRMP2-overexpression delayed bulb formation and rescued impairment of axonal mitochondrial transport after axotomy in vitro. In vivo, CRMP2-overexpression effectively protected the proximal axon from fragmentation within 6?hours after crush. Finally, a proteomic analysis of the optic nerve was performed at 6?hours after crush, which identified further proteins regulated during AAD, including several interactors of CRMP2. These findings reveal CRMP2 as an important mediator of AAD and define it as a putative therapeutic target.

SUBMITTER: Zhang JN 

PROVIDER: S-EPMC5109185 | biostudies-literature | 2016 Nov

REPOSITORIES: biostudies-literature

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Calpain-mediated cleavage of collapsin response mediator protein-2 drives acute axonal degeneration.

Zhang Jian-Nan JN   Michel Uwe U   Lenz Christof C   Friedel Caroline C CC   Köster Sarah S   d'Hedouville Zara Z   Tönges Lars L   Urlaub Henning H   Bähr Mathias M   Lingor Paul P   Koch Jan C JC  

Scientific reports 20161115


Axonal degeneration is a key initiating event in many neurological diseases. Focal lesions to axons result in a rapid disintegration of the perilesional axon by acute axonal degeneration (AAD) within several hours. However, the underlying molecular mechanisms of AAD are only incompletely understood. Here, we studied AAD in vivo through live-imaging of the rat optic nerve and in vitro in primary rat cortical neurons in microfluidic chambers. We found that calpain is activated early during AAD of  ...[more]

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