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ADAM17 variant causes hair loss via ubiquitin ligase TRIM47–mediated degradation
Xiaoxiao Wang, … , Hui Zhang, Ming Li
Xiaoxiao Wang, … , Hui Zhang, Ming Li
Published May 21, 2024
Citation Information: JCI Insight. 2024;9(13):e177588. https://doi.org/10.1172/jci.insight.177588.
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Research Article Dermatology Genetics

ADAM17 variant causes hair loss via ubiquitin ligase TRIM47–mediated degradation

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Abstract

Hypotrichosis is a genetic disorder characterized by a diffuse and progressive loss of scalp and/or body hair. Nonetheless, the causative genes for several affected individuals remain elusive, and the underlying mechanisms have yet to be fully elucidated. Here, we discovered a dominant variant in a disintegrin and a metalloproteinase domain 17 (ADAM17) gene caused hypotrichosis with woolly hair. Adam17 (p.D647N) knockin mice mimicked the hair abnormality in patients. ADAM17 (p.D647N) mutation led to hair follicle stem cell (HFSC) exhaustion and caused abnormal hair follicles, ultimately resulting in alopecia. Mechanistic studies revealed that ADAM17 binds directly to E3 ubiquitin ligase tripartite motif-containing protein 47 (TRIM47). ADAM17 variant enhanced the association between ADAM17 and TRIM47, leading to an increase in ubiquitination and subsequent degradation of ADAM17 protein. Furthermore, reduced ADAM17 protein expression affected the Notch signaling pathway, impairing the activation, proliferation, and differentiation of HFSCs during hair follicle regeneration. Overexpression of Notch intracellular domain rescued the reduced proliferation ability caused by Adam17 variant in primary fibroblast cells.

Authors

Xiaoxiao Wang, Chaolan Pan, Luyao Zheng, Jianbo Wang, Quan Zou, Peiyi Sun, Kaili Zhou, Anqi Zhao, Qiaoyu Cao, Wei He, Yumeng Wang, Ruhong Cheng, Zhirong Yao, Si Zhang, Hui Zhang, Ming Li

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Figure 6

ADAM17 variant inhibits hair follicle development through the Notch signaling pathway.

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ADAM17 variant inhibits hair follicle development through the Notch sign...
(A) Log2 fold-change in the normalized counts of Proteomics-Seq reads of differentially expressed proteins (DEPs) in wild-type and Adam17D647N/D647N mice. (B) Heatmap of DEPs in the indicated mice, annotated for selected proteins. (C) DEP analysis revealed a substantial decrease of hair shaft and IRS markers in Adam17D647N/D647N mice. (n = 3 biological replicates.) (D) Pathway enrichment analysis of DEPs revealed marked upregulation of ubiquinone and other terpenoid-quinone biosynthesis pathways and downregulation of Notch signaling pathways. Results were expressed as mean ± SD; *P < 0.05; **P < 0.01; ***P < 0.001; unpaired 2-tailed t test (C).

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