Pathogenic and Compensatory Mechanisms in Epidermis of Sphingomyelin Synthase 2-Deficient Mice

Author:

Sakai Shota,Makino Asami,Nishi Akihito,Ichikawa Takeshi,Yamashita Tadashi,Taniguchi Makoto,Tokudome YoshihiroORCID,Hirabayashi Yoshio,Akiyama Masashi,Crumrine Debra,Uchida Yoshikazu,Elias Peter M.,Tsuchida Tetsuya,Hamanaka Sumiko

Abstract

Sphingomyelin (SM) is a constituent of cellular membranes, while ceramides (Cer) produced from SM on plasma membranes serve as a lipid mediator that regulates cell proliferation, differentiation, and apoptosis. In the skin, SM also is a precursor of Cer, an important constituent of epidermal permeability barrier. We investigated the role of epidermal SM synthase (SMS)2, an isoform of SMS, which modulates SM and Cer levels on plasma membranes. Although SMS2-knockout (SMS2-KO) mice were not neonatal lethal, an ichthyotic phenotype with epidermal hyperplasia and hyperkeratosis was evident at birth, which persisted until 2 weeks of age. These mice showed abnormal lamellar body morphology and secretion, and abnormal extracellular lamellar membranes in the stratum corneum. These abnormalities were no longer evident by 4 weeks of age in SMS2-KO mice. Our study suggests that (1) exposure to a dry terrestrial environment initiates compensatory responses, thereby normalizing epidermal ichthyotic abnormalities and (2) that a nonlethal gene abnormality can cause an ichthyotic skin phenotype.

Publisher

S. Karger AG

Subject

Dermatology,Pharmacology,Physiology,General Medicine

Reference15 articles.

1. Hofmeister R, Wiegmann K, Korherr C, Bernardo K, Krönke M, Falk W. Activation of acid sphingomyelinase by interleukin-1 (IL-1) requires the IL-1 receptor accessory protein. J Biol Chem. 1997;272(44):27730–6.

2. Taniguchi M, Okazaki T. The role of sphingomyelin and sphingomyelin synthases in cell death, proliferation and migration-from cell and animal models to human disorders. Biochim Biophys Acta. 2014 May;1841(5):692–703.

3. Uchida Y. Ceramide signaling in mammalian epidermis. Biochim Biophys Acta. 2014 Mar;1841(3):453–62.

4. Uchida Y, Hara M, Nishio H, Sidransky E, Inoue S, Otsuka F, et al. Epidermal sphingomyelins are precursors for selected stratum corneum ceramides. J Lipid Res. 2000 Dec;41(12):2071–82.

5. Hamanaka S, Hara M, Nishio H, Otsuka F, Suzuki A, Uchida Y. Human epidermal glucosylceramides are major precursors of stratum corneum ceramides. J Invest Dermatol. 2002 Aug;119(2):416–23.

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