SERPINB7 Deficiency Increases Legumain Activity and Impairs the Epidermal Barrier in Nagashima-Type Palmoplantar Keratoderma.

J Invest Dermatol

Genetic Skin Disease Center, Jiangsu Key Laboratory of Molecular Biology for Skin Diseases and STIs, Hospital for skin diseases, Institute of Dermatology, Chinese Academy of Medical Sciences & Peking Union Medical College, Nanjing, China. Electronic address:

Published: June 2024

AI Article Synopsis

  • - Nagashima-type palmoplantar keratoderma is a genetic skin condition caused by mutations in the SERPINB7 gene, commonly seen in Asians, with no effective treatment currently available as its underlying mechanisms are not fully understood.
  • - Research using Serpinb7 mice revealed a compromised skin barrier and reduced epidermal differentiation, particularly following treatment with acetone-ether-water, highlighting the role of SERPINB7 in maintaining skin integrity.
  • - The study found that SERPINB7 functions as an inhibitor of the protease legumain, and its deficiency results in increased legumain activity, which disrupts cytoskeletal proteins and contributes to the skin barrier issues in this condition.

Article Abstract

Nagashima-type palmoplantar keratoderma is an autosomal recessive genodermatosis caused by loss-of-function variants in SERPINB7 and is the most prevalent form of inherited palmoplantar keratodermas among Asians. However, there is currently no effective therapy for Nagashima-type palmoplantar keratoderma because its pathogenesis remains unclear. In this study, Serpinb7 mice were generated and spontaneously developed a disrupted skin barrier, which was further exacerbated by acetone-ether-water treatment. The skin of these Serpinb7 mice showed weakened cytoskeletal proteins. In addition, SERPINB7 deficiency consistently led to decreased epidermal differentiation in a 3-dimensional human epidermal model. We also demonstrated that SERPINB7 was an inhibitory serpin that mainly inhibited the protease legumain. SERPINB7 bound directly with legumain and inhibited legumain activity both in vitro and in vivo. Furthermore, we found that SERPINB7 inhibited legumain in a protease-substrate manner and identified the cleavage sites of SERPINB7 as Asn and Asn. Overall, we found that SERPINB7 showed the nature of a cysteine protease inhibitor and identified legumain as a key target protease of SERPINB7. Loss of SERPINB7 function led to overactivation of legumain, which might disrupt cytoskeletal proteins, contributing to the impaired skin barrier in Nagashima-type palmoplantar keratoderma. These findings may lead to the development of therapeutic strategies for Nagashima-type palmoplantar keratoderma.

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Source
http://dx.doi.org/10.1016/j.jid.2024.05.025DOI Listing

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