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PMID: 8751979 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Activation of keratinocyte nicotinic cholinergic receptors stimulates calcium influx and enhances cell differentiation.

The Journal of investigative dermatology ·Vol. 107 ·No. 3 ·1996-09-00 ·Pages 412-8

Grando SA, Horton RM, Mauro TM, Kist DA, Lee TX, Dahl MV

Abstract

Human epidermal keratinocytes synthesize, secrete, and degrade acetylcholine and use their cell-surface nicotinic and muscarinic cholinergic receptors to mediate the autocrine and paracrine effects of acetyl-choline. Because acetylcholine modulates transmembrane Ca2+ transport and intracellular metabolism in several types of cells, we hypothesized that cholinergic agents might have similar effects on keratinocytes. Nicotine increased in a concentration-dependent manner the amount of 45Ca2+ taken up by keratinocytes isolated from human neonatal fore-skins. This effect was abolished in the presence of the specific nicotinic antagonist mecamylamine, indicating that it was mediated by keratinocyte nicotinic acetylcholine receptor(s). The sequences encoding the alpha 5 and alpha 7 nicotinic receptor subunits were amplified from cDNA isolated from cultured keratinocytes. These subunits, as well as the alpha 3, beta 2, and beta 4 subunits previously found in keratinocytes, can be components of Ca(2+)-permeable nicotinic receptor channels. To learn how activation of keratinocyte nicotinic receptors affected the rate of cell differentiation, we measured the nicotinic cholinergic effects on the expression of differentiation markers by cultured keratinocytes. Long-term incubations with micromolar concentrations of nicotine markedly increased the number of cells forming cornified envelopes and the number of cells staining with antibodies to suprabasal keratin 10, transglutaminase type I, involucrin, and filaggrin. The increased production of these differentiation-associated proteins was verified by Western blotting. Because nicotinic cholinergic stimulation causes transmembrane Ca2+ transport into keratinocytes, and because changes in concentrations of intracellular Ca2+ are known to alter various keratinocyte functions, including differentiation, the subcellular mechanisms mediating the autocrine and paracrine actions of epidermal acetylcholine on keratinocytes may involve Ca2+ as a second messenger.

MeSH Terms
Acetylcholine/pharmacology Calcium/metabolism Calcium Channels/physiology Cell Differentiation/drug effects Electrophysiology Filaggrin Proteins Humans Ion Channel Gating Ion Channels/metabolism Keratinocytes/cytology,metabolism Mecamylamine/pharmacology Nicotine/metabolism,pharmacology Permeability Receptors, Nicotinic/drug effects,metabolism
Chemicals
Calcium Channels FLG protein, human Filaggrin Proteins Ion Channels Receptors, Nicotinic Mecamylamine Nicotine Acetylcholine Calcium
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Grando S A
Department of Dermatology of University of Minnesota, Minneapolis, USA.
Horton R M
Mauro T M
Kist D A
Lee T X
Dahl M V
Article Info
Journal
The Journal of investigative dermatology
Abbr.
J Invest Dermatol
ISSN
0022-202X
Published
1996-09-00
Pages
412-8
Language
English
Region
United States
NLM ID
0426720
Subset
IM
Grants
NIAMS NIH HHS · KO8 ARO1853 · United States
NIAMS NIH HHS · R29 AR42955 · United States
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