1. Academic Validation
  2. Benzbromarone Induces Targeted Degradation of HSP47 Protein and Improves Hypertrophic Scar Formation

Benzbromarone Induces Targeted Degradation of HSP47 Protein and Improves Hypertrophic Scar Formation

  • J Invest Dermatol. 2023 Oct 12:S0022-202X(23)02966-4. doi: 10.1016/j.jid.2023.09.279.
Jung Gyu Park 1 Dong Chul Lim 2 Jeonghwan Park 3 Seoah Park 3 Jongsoo Mok 3 Keon Wook Kang 4 Joonghoon Park 5
Affiliations

Affiliations

  • 1 Innovo Therapeutics Inc., Daejeon, Korea; College of pharmacy, Seoul National University, Seoul, Korea.
  • 2 Innovo Therapeutics Inc., Daejeon, Korea.
  • 3 Graduate School of Int'l Agricultural Technology and Institute of Green Bio Science and Technology, Seoul National University, PyeongChang, Korea.
  • 4 College of pharmacy, Seoul National University, Seoul, Korea. Electronic address: [email protected].
  • 5 Graduate School of Int'l Agricultural Technology and Institute of Green Bio Science and Technology, Seoul National University, PyeongChang, Korea. Electronic address: [email protected].
Abstract

Fibrotic diseases are characterized by the abnormal accumulation of collagen in the extracellular matrix (ECM), leading to the functional impairment of various organs. In the skin, excessive collagen deposition manifests as hypertrophic scars and keloids, placing a substantial burden on patients and the health care system worldwide. Heat Shock Protein 47 (HSP47) is essential for proper collagen assembly and contributes to fibrosis. However, identifying clinically applicable HSP47 inhibitors has been a major pharmaceutical challenge. Here, we identified benzbromarone (BBR) as a HSP47 inhibitor for hypertrophic scarring treatment. BBR inhibited collagen production and secretion in fibroblasts from keloid patients by binding to HSP47 and inhibiting the interaction between HSP47 and collagen. Interestingly, BBR not only inhibits HSP47 but also acts as a molecular glue degrader that promotes its proteasome-dependent degradation. Through these molecular mechanisms, BBR effectively reduced hypertrophic scarring in mini pigs and mice with burns and/or excisional skin damage. Thus, these findings suggest that BBR can be used to clinically treat hypertrophic scars and, more generally, fibrotic diseases.

Keywords

Benzbromarone; Collagen; HSP47; Hypertrophic scar; Targeted protein degrader.

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