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Ceramide stimulates ABCA12 expression via peroxisome proliferator-activated receptor δ in human keratinocytes

  • Yan J. Jiang
  • , Yoshikazu Uchida
  • , Biao Lu
  • , Peggy Kim
  • , Cungui Mao
  • , Masashi Akiyama
  • , Peter M. Elias
  • , Walter M. Holleran
  • , Carl Grunfeld
  • , Kenneth R. Feingold
  • University of California at San Francisco
  • VA Medical Center
  • Hokkaido University

Research output: Contribution to journalArticlepeer-review

48 Scopus citations

Abstract

ABCA12 (ATP binding cassette transporter, family 12) is a cellular membrane transporter that facilitates the delivery of glucosylceramides to epidermal lamellar bodies in keratinocytes, a process that is critical for permeability barrier formation. Following secretion of lamellar bodies into the stratum corneum, glucosylceramides are metabolized to ceramides, which comprise ∼50% of the lipid in stratum corneum. Gene mutations of ABCA12 underlie harlequin ichthyosis, a devastating skin disorder characterized by abnormal lamellar bodies and a severe barrier abnormality. Recently we reported that peroxisome proliferator-activated receptor (PPAR) and liver X receptor activators increase ABCA12 expression in human keratinocytes. Here we demonstrate that ceramide (C2-Cer and C6-Cer), but not C8-glucosylceramides, sphingosine, or ceramide 1-phosphate, increases ABCA12 mRNA expression in a dose- and time-dependent manner. Inhibitors of glucosylceramide synthase, sphingomyelin synthase, and ceramidase and small interfering RNA knockdown of human alkaline ceramidase, which all increase endogenous ceramide levels, also increased ABCA12 mRNA levels. Moreover, simultaneous treatment with C6-Cer and each of these same inhibitors additively increased ABCA12 expression, indicating that ceramide is an important inducer of ABCA12 expression and that the conversion of ceramide to other sphingolipids or metabolites is not required. Finally, both exogenous and endogenous ceramides preferentially stimulate PPARδ expression (but not other PPARs or liver X receptors), whereas PPARδ knockdown by siRNA transfection specifically diminished the ceramide-induced increase in ABCA12 mRNA levels, indicating that PPARδ is a mediator of the ceramide effect. Together, these results show that ceramide, an important lipid component of epidermis, up-regulates ABCA12 expression via the PPARδ-mediated signaling pathway, providing a substrate-driven, feed-forward mechanism for regulating this key lipid transporter.

Original languageEnglish
Pages (from-to)18942-18952
Number of pages11
JournalJournal of Biological Chemistry
Volume284
Issue number28
DOIs
StatePublished - Jul 10 2009

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