Nature communications · 2023

Whole genome sequencing identifies genetic variants associated with neurogenic inflammation in rosacea

Deng, Z. and Chen, M. and Zhao, Z. and Xiao, W. and Liu, T. and Peng, Q. and Wu, Z. and Xu, S. and Shi, W. and Jian, D. and Wang, B. and Liu, F. and Tang, Y. and Huang, Y. and Zhang, Y. and Wang, Q. and Sun, L. and Xie, H. and Zhang, G. and Li, J.

doi:10.1038/s41467-023-39761-2

Abstract

Rosacea is a chronic inflammatory skin disorder with high incidence rate. Although genetic predisposition to rosacea is suggested by existing evidence, the genetic basis remains largely unknown. Here we present the integrated results of whole genome sequencing (WGS) in 3 large rosacea families and whole exome sequencing (WES) in 49 additional validation families. We identify single rare deleterious variants of LRRC4, SH3PXD2A and SLC26A8 in large families, respectively. The relevance of SH3PXD2A, SLC26A8 and LRR family genes in rosacea predisposition is underscored by presence of additional variants in independent families. Gene ontology analysis suggests that these genes encode proteins taking part in neural synaptic processes and cell adhesion. In vitro functional analysis shows that mutations in LRRC4, SH3PXD2A and SLC26A8 induce the production of vasoactive neuropeptides in human neural cells. In a mouse model recapitulating a recurrent Lrrc4 mutation from human patients, we find rosacea-like skin inflammation, underpinned by excessive vasoactive intestinal peptide (VIP) release by peripheral neurons. These findings strongly support familial inheritance and neurogenic inflammation in rosacea development and provide mechanistic insight into the etiopathogenesis of the condition.

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Nature communications 2023

Whole genome sequencing identifies genetic variants associated with neurogenic inflammation in rosacea

Deng, Z. and Chen, M. and Zhao, Z. and Xiao, W. and Liu, T. and Peng, Q. and Wu, Z. and Xu, S. and Shi, W. and Jian, D. and Wang, B. and Liu, F. and Tang, Y. and Huang, Y. and Zhang, Y. and Wang, Q. and Sun, L. and Xie, H. and Zhang, G. and Li, J.

doi:10.1038/s41467-023-39761-2

Abstract

Rosacea is a chronic inflammatory skin disorder with high incidence rate. Although genetic predisposition to rosacea is suggested by existing evidence, the genetic basis remains largely unknown. Here we present the integrated results of whole genome sequencing (WGS) in 3 large rosacea families and whole exome sequencing (WES) in 49 additional validation families. We identify single rare deleterious variants of LRRC4, SH3PXD2A and SLC26A8 in large families, respectively. The relevance of SH3PXD2A, SLC26A8 and LRR family genes in rosacea predisposition is underscored by presence of additional variants in independent families. Gene ontology analysis suggests that these genes encode proteins taking part in neural synaptic processes and cell adhesion. In vitro functional analysis shows that mutations in LRRC4, SH3PXD2A and SLC26A8 induce the production of vasoactive neuropeptides in human neural cells. In a mouse model recapitulating a recurrent Lrrc4 mutation from human patients, we find rosacea-like skin inflammation, underpinned by excessive vasoactive intestinal peptide (VIP) release by peripheral neurons. These findings strongly support familial inheritance and neurogenic inflammation in rosacea development and provide mechanistic insight into the etiopathogenesis of the condition.

Back to publications

Central South University Xiangya Hospital Li Lab Skin Aging and Hair Regeneration Research Center