Molecular and functional expression of cation-chloride cotransporters in dorsal root ganglion neurons during postnatal maturation

Author:

Mao Shihong1,Garzon-Muvdi Tomás1,Di Fulvio Mauricio1,Chen Yanfang1,Delpire Eric2,Alvarez Francisco J.3,Alvarez-Leefmans Francisco J.1

Affiliation:

1. Department of Pharmacology and Toxicology, Boonshoft School of Medicine, Wright State University, Dayton, Ohio;

2. Department of Anesthesiology, Vanderbilt University Medical School, Nashville, Tennessee; and

3. Department of Neuroscience, Cell Biology, and Physiology, Wright State University, Dayton, Ohio

Abstract

GABA depolarizes and excites central neurons during early development, becoming inhibitory and hyperpolarizing with maturation. This “developmental shift” occurs abruptly, reflecting a decrease in intracellular Clconcentration ([Cl]i) and a hyperpolarizing shift in Clequilibrium potential due to upregulation of the K+-Clcotransporter KCC2b, a neuron-specific Clextruder. In contrast, primary afferent neurons (PANs) are depolarized by GABA throughout adulthood because of expression of NKCC1, a Na+-K+-2Clcotransporter that accumulates Clabove equilibrium. The GABAA-mediated depolarization of PANs determines presynaptic inhibition in the spinal cord, a key mechanism gating somatosensory information. Little is known about developmental changes in Cltransporter expression and Clhomeostasis in PANs. Whether NKCC1 is expressed in PANs of all phenotypes or is restricted to subpopulations (e.g., nociceptors) is debatable. Likewise, whether PANs express KCC2s is controversial. We investigated NKCC1 and K+-Clcotransporter expression in rat and mouse dorsal root ganglion (DRG) neurons with molecular methods. Using fluorescence imaging microscopy, we measured [Cl]iin acutely dissociated rat DRG neurons (P0–P21) loaded with N-(ethoxycarbonylmethyl)-6-methoxyquinolinium bromide and classified with phenotypic markers. DRG neurons of all sizes express two NKCC1 mRNAs, one full-length and a shorter splice variant lacking exon 21. Immunolabeling with validated antibodies revealed ubiquitous expression of NKCC1 in DRG neurons irrespective of postnatal age and phenotype. As maturation progresses [Cl]idecreases gradually, persisting above equilibrium in >95% mature neurons. DRG neurons express mRNAs for KCC1, KCC3s, and KCC4, but not for KCC2s. Mechanisms underlying PANs' developmental changes in Clhomeostasis are discussed and compared with those of central neurons.

Publisher

American Physiological Society

Subject

Physiology,General Neuroscience

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