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Nanchangmycin regulates FYN, PTK2, and MAPK1/3 to control the fibrotic activity of human hepatic stellate cells.
Li, Wenyang; Chen, Jennifer Y; Sun, Cheng; Sparks, Robert P; Pantano, Lorena; Rahman, Raza-Ur; Moran, Sean P; Pondick, Joshua V; Kirchner, Rory; Wrobel, David; Bieler, Michael; Sauer, Achim; Ho Sui, Shannan J; Doerner, Julia F; Rippmann, Jörg F; Mullen, Alan C.
Affiliation
  • Li W; Division of Gastroenterology, Massachusetts General Hospital, Boston, United States.
  • Chen JY; Harvard Medical School, Boston, United States.
  • Sun C; Division of Gastroenterology, Massachusetts General Hospital, Boston, United States.
  • Sparks RP; Harvard Medical School, Boston, United States.
  • Pantano L; Division of Gastroenterology, Massachusetts General Hospital, Boston, United States.
  • Rahman RU; Harvard Medical School, Boston, United States.
  • Moran SP; Division of Gastroenterology, Massachusetts General Hospital, Boston, United States.
  • Pondick JV; Harvard Medical School, Boston, United States.
  • Kirchner R; Harvard T.H. Chan School of Public Health, Boston, United States.
  • Wrobel D; Division of Gastroenterology, Massachusetts General Hospital, Boston, United States.
  • Bieler M; Harvard Medical School, Boston, United States.
  • Sauer A; Division of Gastroenterology, Massachusetts General Hospital, Boston, United States.
  • Ho Sui SJ; Harvard Medical School, Boston, United States.
  • Doerner JF; Division of Gastroenterology, Massachusetts General Hospital, Boston, United States.
  • Rippmann JF; Harvard Medical School, Boston, United States.
  • Mullen AC; Harvard T.H. Chan School of Public Health, Boston, United States.
Elife ; 112022 05 26.
Article in En | MEDLINE | ID: mdl-35617485
ABSTRACT
Chronic liver injury causes fibrosis, characterized by the formation of scar tissue resulting from excessive accumulation of extracellular matrix (ECM) proteins. Hepatic stellate cell (HSC) myofibroblasts are the primary cell type responsible for liver fibrosis, yet there are currently no therapies directed at inhibiting the activity of HSC myofibroblasts. To search for potential anti-fibrotic compounds, we performed a high-throughput compound screen in primary human HSC myofibroblasts and identified 19 small molecules that induce HSC inactivation, including the polyether ionophore nanchangmycin (NCMC). NCMC induces lipid re-accumulation while reducing collagen expression, deposition of collagen in the extracellular matrix, cell proliferation, and migration. We find that NCMC increases cytosolic Ca2+ and reduces the phosphorylated protein levels of FYN, PTK2 (FAK), MAPK1/3 (ERK2/1), HSPB1 (HSP27), and STAT5B. Further, depletion of each of these kinases suppress COL1A1 expression. These studies reveal a signaling network triggered by NCMC to inactivate HSC myofibroblasts and reduce expression of proteins that compose the fibrotic scar. Identification of the antifibrotic effects of NCMC and the elucidation of pathways by which NCMC inhibits fibrosis provide new tools and therapeutic targets that could potentially be utilized to combat the development and progression of liver fibrosis.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Cicatrix / Hepatic Stellate Cells Limits: Humans Language: En Journal: Elife Year: 2022 Document type: Article Affiliation country: United States

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Cicatrix / Hepatic Stellate Cells Limits: Humans Language: En Journal: Elife Year: 2022 Document type: Article Affiliation country: United States