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Biogeographic and disease-specific alterations in epidermal lipid composition and single-cell analysis of acral keratinocytes.

Authors :
Merleev AA
Le ST
Alexanian C
Toussi A
Xie Y
Marusina AI
Watkins SM
Patel F
Billi AC
Wiedemann J
Izumiya Y
Kumar A
Uppala R
Kahlenberg JM
Liu FT
Adamopoulos IE
Wang EA
Ma C
Cheng MY
Xiong H
Kirane A
Luxardi G
Andersen B
Tsoi LC
Lebrilla CB
Gudjonsson JE
Maverakis E
Source :
JCI insight [JCI Insight] 2022 Aug 22; Vol. 7 (16). Date of Electronic Publication: 2022 Aug 22.
Publication Year :
2022

Abstract

The epidermis is the outermost layer of skin. Here, we used targeted lipid profiling to characterize the biogeographic alterations of human epidermal lipids across 12 anatomically distinct body sites, and we used single-cell RNA-Seq to compare keratinocyte gene expression at acral and nonacral sites. We demonstrate that acral skin has low expression of EOS acyl-ceramides and the genes involved in their synthesis, as well as low expression of genes involved in filaggrin and keratin citrullination (PADI1 and PADI3) and corneodesmosome degradation, changes that are consistent with increased corneocyte retention. Several overarching principles governing epidermal lipid expression were also noted. For example, there was a strong negative correlation between the expression of 18-carbon and 22-carbon sphingoid base ceramides. Disease-specific alterations in epidermal lipid gene expression and their corresponding alterations to the epidermal lipidome were characterized. Lipid biomarkers with diagnostic utility for inflammatory and precancerous conditions were identified, and a 2-analyte diagnostic model of psoriasis was constructed using a step-forward algorithm. Finally, gene coexpression analysis revealed a strong connection between lipid and immune gene expression. This work highlights (a) mechanisms by which the epidermis is uniquely adapted for the specific environmental insults encountered at different body surfaces and (b) how inflammation-associated alterations in gene expression affect the epidermal lipidome.

Details

Language :
English
ISSN :
2379-3708
Volume :
7
Issue :
16
Database :
MEDLINE
Journal :
JCI insight
Publication Type :
Academic Journal
Accession number :
35900871
Full Text :
https://doi.org/10.1172/jci.insight.159762