RNA编辑
生物
银屑病
核糖核酸
遗传学
转录组
基因
基因敲除
等位基因
内含子
基因表达
RNA结合蛋白
多路复用
个性化医疗
突变
遗传性皮肤病
疾病
表型
全基因组关联研究
癌症研究
RNA序列
基因组编辑
人类遗传学
医学
作者
Florence Assan,Margot Tragin,Sahiti Marella,Joanna Lipecka,Kévin Roger,Mohammed Zarhrate,Vincent Bondet,Vincent Nguyen,Fadela Akroun,Patrick Nitschké,Ida Chiara Guerrera,Christine Bole,Araksya Izmiryan,Emilia Puig Lombardi,Jennifer Fox,Joseph Kirma,Haihan Zhang,Yiqian Gu,Rachael Bogle,Katia Boniface
摘要
Recent evidence implicates altered RNA editing and dysregulated type I IFN signaling in immune-mediated diseases, including psoriasis, although the underlying genetic mechanisms remain poorly defined. We investigated four unrelated multiplex families with early-onset plaque psoriasis, with or without psoriatic arthritis, segregating as a monogenic trait and characterized by a strong IFN signature in skin and blood. Whole-exome sequencing identified four rare heterozygous loss-of-function mutations in ADAR1 cosegregating with disease and elevated IFN-stimulated gene expression. Six additional rare variants were detected in an independent cohort of 125 psoriasis patients. Single-cell transcriptomics identified keratinocytes and melanocytes as major IFN sources. Functional studies showed that ADAR1 knockdown or expression of ADAR1G1119R and ADAR1P3A alleles pathogenic variants reduced adenosine-to-inosine RNA editing and increased IFN-stimulated genes and inflammatory cytokines, effects reversed by upadacitinib and deucravacitinib. These findings define a novel IFN-dependent psoriasis subtype caused by inborn defects of ADAR1-mediated RNA editing, with direct implications for precision medicine in psoriatic disease.
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