RRC ID 83658
Author Yuanqi Hua, Judith Habicher, Matthias Carl, Remy Manuel, Henrik Boije
Title Novel Transgenic Zebrafish Lines to Study the CHRNA3‐B4‐A5 Gene Cluster
Journal Developmental Neurobiology
Abstract ABSTRACTAcetylcholine (ACh), a vital neurotransmitter for both the peripheral (PNS) and central nervous systems (CNS), signals through nicotinic ACh receptors (nAChRs) and muscarinic ACh receptors (mAChR). Here, we explore the expression patterns of three nAChR subunits, chrna3, chrnb4, and chrna5, which are located in an evolutionary conserved cluster. This close genomic positioning, in a range of vertebrates, may indicate co‐functionality and/or co‐expression. Through novel transgenic zebrafish lines, we observe widespread expression within both the PNS and CNS. In the PNS, we observed expression of chrna3tdTomato, chrnb4eGFP, and chrna5tdTomato in the intestinal enteric nervous system; chrna5tdTomato and chrnb4eGFP in sensory ganglia of the lateral line; and chrnb4eGFP in the ear. In the CNS, the expression of chrnb4eGFP and chrna5tdTomato was found in the retina, all three expressed in diverse regions of the brain, where a portion of chrna3tdTomato and chrnb4eGFP cells were found to be inhibitory efferent neurons projecting to the lateral line. Within the spinal cord, we identify distinct populations of chrna3tdTomato‐, chrnb4eGFP‐, and chrna5tdTomato‐expressing neurons within the locomotor network, including dmrt3a‐expressing interneurons and mnx1‐expressing motor neurons. Notably, three to four primary motor neurons per hemisegment were labeled by both chrna3tdTomato and chrnb4eGFP. Interestingly, we identified an sl‐type secondary motor neuron per hemisegement that strongly expressed chrna5tdTomato and co‐expressed chrnb4eGFP. These transgenic lines provide insights into the potential roles of nAChRs within the locomotor network and open avenues for exploring their role in nicotine exposure and addiction in a range of tissues throughout the nervous system.
Volume 85
Published 2025-1-1
DOI 10.1002/dneu.22956
PMID 39686588
PMC PMC11650009
MeSH Animals Animals, Genetically Modified* Central Nervous System / metabolism Multigene Family* Receptors, Nicotinic* / genetics Receptors, Nicotinic* / metabolism Zebrafish* Zebrafish Proteins / genetics Zebrafish Proteins / metabolism
Resource
Zebrafish Tg(dmrt3a:Gal4)