Genetic targeting of myelinated primary afferent neurons using a new NefhCreERT2 knock-in mouse

J John CY. Chen L Lech Kaczmarczyk F Felipe Meira de-Faria M Marcin Szczot W Walker S. Jackson M Max Larsson

Abstract

Abstract Primary afferent neurons that convey somatosensory modalities comprise two large, heterogeneous populations: small-diameter neurons that give rise to slowly conducting unmyelinated axonal C fibers and medium-to-large diameter neurons with fast myelinated A fibers. Despite these two major groupings, tools to differentiate between unmyelinated and myelinated primary afferent fibers by genetic targeting have not been available; in particular, whereas numerous mouse driver lines exist to target different C fiber populations, genetic tools that target myelinated primary afferent populations are scarce. Here we describe a knock-in mouse line expressing tamoxifen-dependent CreERT2 under control of the Nefh gene, which encodes neurofilament heavy chain (NFH or NF200), a protein that is highly enriched in myelinated fibers. This mouse enables highly selective and efficient recombination of Cre-dependent reporters for functional and anatomical interrogation of myelinated fibers while excluding unmyelinated C fibers. In combination with other recombinase-expressing mouse lines, this genetic tool will be valuable for intersectional targeting of subpopulations of myelinated primary afferent fibers.

Article Details

Volume / Issue Vol. 15, Issue 1
Published March 29, 2025
ISSN 2045-2322
Publisher Nature Portfolio

Journal Info

Scientific Reports

Nature Portfolio

ISSN: 2045-2322 Open Access Life Sciences

Authors (6)

J

John CY. Chen

L

Lech Kaczmarczyk

F

Felipe Meira de-Faria

M

Marcin Szczot

W

Walker S. Jackson

M

Max Larsson