Differential expression of nitric oxide synthases in human scalp epidermal and hair follicle pigmentary units: implications for regulation of melanogenesis
- 1 August 2005
- journal article
- Published by Oxford University Press (OUP) in British Journal of Dermatology
- Vol. 153 (2) , 301-309
- https://doi.org/10.1111/j.1365-2133.2005.06718.x
Abstract
Nitric oxide (NO) is a ubiquitous gaseous lipophilic molecule generated from the conversion of L-arginine to L-citrulline by the NO synthases (NOSs). Ultraviolet radiation (UVR)-induced NO production appears to stimulate epidermal melanogenesis. However, given their relative protection from UVR, it is unclear whether NO plays a similar role in hair bulb melanocytes. We aimed to identify the expression profiles of the NOS isoforms endothelial NOS (eNOS), neuronal NOS (nNOS) and inducible NOS (iNOS) and of phosphorylated eNOS and nitrotyrosine within the epidermal and follicular melanin units of normal human haired scalp during the hair growth cycle. This study employed single and double immunohistochemical and immunofluorescence staining techniques using haired scalp from 10 healthy individuals (six women and four men). Melanocytes in the basal layer of the epidermis expressed eNOS, nNOS and nitrotyrosine. By contrast, melanogenically active melanocytes of the anagen hair bulb were wholly negative for these markers. However, other follicular melanocytes not actively involved in pigment production, including undifferentiated melanocytes located in the outer root sheath and melanocytes surviving the apoptosis-driven hair follicle (HF) regression during catagen/telogen, expressed eNOS, nNOS and nitrotyrosine. While iNOS was only weakly expressed in the basal layer of the human epidermis, it was highly expressed in keratinocytes of the inner root sheath (IRS), where it colocalized with trichohyalin, a differentiation-associated protein of the IRS that requires enzyme-catalysed conversion of arginine to citrulline. The NOS isoforms and nitrotyrosine are differentially expressed in different cutaneous melanocyte subpopulations. Results of this study suggest a possible role for eNOS, nNOS, iNOS and nitrotyrosine in melanocyte biology, particularly with respect to melanogenesis and melanocyte survival during HF regression. Another example of possible NO involvement in HF biology is the postsynthetic modification of trichohyalin in differentiating keratinocytes of the IRS. These results suggest that NO may influence several aspects of HF biology.Keywords
This publication has 38 references indexed in Scilit:
- Melanin Pigmentation in Mammalian Skin and Its Hormonal RegulationPhysiological Reviews, 2004
- The role of nitric oxide in the formation of keloid and hypertrophic lesionsMedical Hypotheses, 2001
- Nitric oxide synthases: structure, function and inhibitionBiochemical Journal, 2001
- Coordinated Control of Endothelial Nitric-oxide Synthase Phosphorylation by Protein Kinase C and the cAMP-dependent Protein KinaseJournal of Biological Chemistry, 2001
- The Function of Nitric Oxide in Wound Repair: Inhibition of Inducible Nitric Oxide-Synthase Severely Impairs Wound ReepithelializationJournal of Investigative Dermatology, 1999
- Expression of endothelial nitric oxide synthase in human eccrine clear cellsBritish Journal of Dermatology, 1997
- Immunohistochemical localization of NO synthases in normal human skin and psoriatic skinArchives of Dermatological Research, 1996
- Human Dermal Fibroblasts Produce Nitric Oxide and Express Both Constitutive and Inducible Nitric Oxide Synthase IsoformsJournal of Investigative Dermatology, 1996
- Nitric oxide, a novel biologic messengerCell, 1992
- Cloned and expressed nitric oxide synthase structurally resembles cytochrome P-450 reductaseNature, 1991