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- W3092925261 abstract "BackgroundHundreds of variants associated with atopic dermatitis (AD) and psoriasis, 2 common inflammatory skin disorders, have previously been discovered through genome-wide association studies (GWASs). The majority of these variants are in noncoding regions, and their target genes remain largely unclear.ObjectiveWe sought to understand the effects of these noncoding variants on the development of AD and psoriasis by linking them to the genes that they regulate.MethodsWe constructed genomic 3-dimensional maps of human keratinocytes during differentiation by using targeted chromosome conformation capture (Capture Hi-C) targeting more than 20,000 promoters and 214 GWAS variants and combined these data with transcriptome and epigenomic data sets. We validated our results with reporter assays, clustered regularly interspaced short palindromic repeats activation, and examination of patient gene expression from previous studies.ResultsWe identified 118 target genes of 82 AD and psoriasis GWAS variants. Differential expression of 58 of the 118 target genes (49%) occurred in either AD or psoriatic lesions, many of which were not previously linked to any skin disease. We highlighted the genes AFG1L, CLINT1, ADO, LINC00302, and RP1-140J1.1 and provided further evidence for their potential roles in AD and psoriasis.ConclusionsOur work focused on skin barrier pathology through investigation of the interaction profile of GWAS variants during keratinocyte differentiation. We have provided a catalogue of candidate genes that could modulate the risk of AD and psoriasis. Given that only 35% of the target genes are the gene nearest to the known GWAS variants, we expect that our work will contribute to the discovery of novel pathways involved in AD and psoriasis. Hundreds of variants associated with atopic dermatitis (AD) and psoriasis, 2 common inflammatory skin disorders, have previously been discovered through genome-wide association studies (GWASs). The majority of these variants are in noncoding regions, and their target genes remain largely unclear. We sought to understand the effects of these noncoding variants on the development of AD and psoriasis by linking them to the genes that they regulate. We constructed genomic 3-dimensional maps of human keratinocytes during differentiation by using targeted chromosome conformation capture (Capture Hi-C) targeting more than 20,000 promoters and 214 GWAS variants and combined these data with transcriptome and epigenomic data sets. We validated our results with reporter assays, clustered regularly interspaced short palindromic repeats activation, and examination of patient gene expression from previous studies. We identified 118 target genes of 82 AD and psoriasis GWAS variants. Differential expression of 58 of the 118 target genes (49%) occurred in either AD or psoriatic lesions, many of which were not previously linked to any skin disease. We highlighted the genes AFG1L, CLINT1, ADO, LINC00302, and RP1-140J1.1 and provided further evidence for their potential roles in AD and psoriasis. Our work focused on skin barrier pathology through investigation of the interaction profile of GWAS variants during keratinocyte differentiation. We have provided a catalogue of candidate genes that could modulate the risk of AD and psoriasis. Given that only 35% of the target genes are the gene nearest to the known GWAS variants, we expect that our work will contribute to the discovery of novel pathways involved in AD and psoriasis." @default.
- W3092925261 created "2020-10-22" @default.
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- W3092925261 date "2021-05-01" @default.
- W3092925261 modified "2023-10-17" @default.
- W3092925261 title "Chromatin interactions in differentiating keratinocytes reveal novel atopic dermatitis– and psoriasis-associated genes" @default.
- W3092925261 cites W1513329088 @default.
- W3092925261 cites W1776547251 @default.
- W3092925261 cites W1965096450 @default.
- W3092925261 cites W1977095804 @default.
- W3092925261 cites W1983015859 @default.
- W3092925261 cites W1988242006 @default.
- W3092925261 cites W1993212221 @default.
- W3092925261 cites W2004451013 @default.
- W3092925261 cites W2008227324 @default.
- W3092925261 cites W2009576540 @default.
- W3092925261 cites W2018363492 @default.
- W3092925261 cites W2018838463 @default.
- W3092925261 cites W2020906240 @default.
- W3092925261 cites W2029292942 @default.
- W3092925261 cites W2033342396 @default.
- W3092925261 cites W2045113343 @default.
- W3092925261 cites W2054923215 @default.
- W3092925261 cites W2073396586 @default.
- W3092925261 cites W2074307047 @default.
- W3092925261 cites W2077122170 @default.
- W3092925261 cites W2085258093 @default.
- W3092925261 cites W2094807512 @default.
- W3092925261 cites W2101189546 @default.
- W3092925261 cites W2102889851 @default.
- W3092925261 cites W2105842551 @default.
- W3092925261 cites W2120656041 @default.
- W3092925261 cites W2122406787 @default.
- W3092925261 cites W2127862779 @default.
- W3092925261 cites W2144041275 @default.
- W3092925261 cites W2148705591 @default.
- W3092925261 cites W2152904546 @default.
- W3092925261 cites W2182733429 @default.
- W3092925261 cites W2243398804 @default.
- W3092925261 cites W2264585211 @default.
- W3092925261 cites W2335965453 @default.
- W3092925261 cites W2399574658 @default.
- W3092925261 cites W2525796739 @default.
- W3092925261 cites W2527523198 @default.
- W3092925261 cites W2621774891 @default.
- W3092925261 cites W2745773403 @default.
- W3092925261 cites W2752670171 @default.
- W3092925261 cites W2761883725 @default.
- W3092925261 cites W2767826728 @default.
- W3092925261 cites W2777388159 @default.
- W3092925261 cites W2792469977 @default.
- W3092925261 cites W2809801545 @default.
- W3092925261 cites W2896223915 @default.
- W3092925261 cites W2899140256 @default.
- W3092925261 cites W2899400632 @default.
- W3092925261 cites W2900310474 @default.
- W3092925261 cites W2901303766 @default.
- W3092925261 cites W2904628228 @default.
- W3092925261 cites W2908925106 @default.
- W3092925261 cites W2942684831 @default.
- W3092925261 cites W2950267780 @default.
- W3092925261 cites W2951039473 @default.
- W3092925261 cites W2995105024 @default.
- W3092925261 cites W3010597276 @default.
- W3092925261 doi "https://doi.org/10.1016/j.jaci.2020.09.035" @default.
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