Neuronal activity disrupts myelinated axon integrity in the absence of NKCC1b

Through a genetic screen in zebrafish, we identified a mutant with disruption to myelin in both the CNS and PNS caused by a mutation in a previously uncharacterized gene, slc12a2b, predicted to encode a Na+, K+, and Cl- (NKCC) cotransporter, NKCC1b. slc12a2b/NKCC1b mutants exhibited a severe and pro...

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Veröffentlicht in:The Journal of cell biology 2020-07, Vol.219 (7)
Hauptverfasser: Marshall-Phelps, Katy L H, Kegel, Linde, Baraban, Marion, Ruhwedel, Torben, Almeida, Rafael G, Rubio-Brotons, Maria, Klingseisen, Anna, Benito-Kwiecinski, Silvia K, Early, Jason J, Bin, Jenea M, Suminaite, Daumante, Livesey, Matthew R, Möbius, Wiebke, Poole, Richard J, Lyons, David A
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Sprache:eng
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Zusammenfassung:Through a genetic screen in zebrafish, we identified a mutant with disruption to myelin in both the CNS and PNS caused by a mutation in a previously uncharacterized gene, slc12a2b, predicted to encode a Na+, K+, and Cl- (NKCC) cotransporter, NKCC1b. slc12a2b/NKCC1b mutants exhibited a severe and progressive pathology in the PNS, characterized by dysmyelination and swelling of the periaxonal space at the axon-myelin interface. Cell-type-specific loss of slc12a2b/NKCC1b in either neurons or myelinating Schwann cells recapitulated these pathologies. Given that NKCC1 is critical for ion homeostasis, we asked whether the disruption to myelinated axons in slc12a2b/NKCC1b mutants is affected by neuronal activity. Strikingly, we found that blocking neuronal activity completely prevented and could even rescue the pathology in slc12a2b/NKCC1b mutants. Together, our data indicate that NKCC1b is required to maintain neuronal activity-related solute homeostasis at the axon-myelin interface, and the integrity of myelinated axons.
ISSN:0021-9525
1540-8140
1540-8140
DOI:10.1083/jcb.201909022