Hyaluronan reglerar Bone Morphogenetic Protein-7-beroende förebyggande och reversering av myofibroblast-fenotyp
- 01Proteinet BMP7 kan förhindra och reversera bildandet av myofibroblaster
- 02Det verkar genom att få celler att ta upp och bryta ner hyaluronan
- 03Processen involverar enzymet Hyal2 och receptorn CD44v7/8
- 04Dessa molekyler är potentiella nya mål för behandlingar mot fibros
Ett antifibrotiskt protein kan motverka ärrbildning genom att få celler att bryta ner hyaluronan, en viktig komponent i den extracellulära matrixen.
Hyaluronan (HA) promotes transforming growth factor (TGF)-β1-driven myofibroblast phenotype. However, HA can also have disease-limiting activity. Bone morphogenetic protein-7 (BMP7) is an antifibrotic cytokine that antagonizes TGF-β1, and isolated studies have demonstrated that HA can both mediate and modulate BMP7 responses. In this study, we investigated whether BMP7 can modulate HA in a manner that leads to prevention/reversal of TGF-β1-driven myofibroblast differentiation in human lung fibroblasts. Results demonstrated that BMP7 prevented and reversed TGF-β1-driven myofibroblast differentiation through a novel mechanism. BMP7 promoted the dissolution and internalization of cell-surface HA into cytoplasmic endosomes. Endosomal HA co-localized with the HA-degrading enzymes, hyaluronidase-1 and hyaluronidase-2 (Hyal2). Moreover, BMP7 showed differential regulation of CD44 standard and variant isoform expression, when compared with TGF-β1. In particular, BMP7 increased membrane expression of CD44v7/8. Inhibiting CD44v7/8 as well as blocking Hyal2 and the Na(+)/H(+) exchanger-1 at the cell-surface prevented BMP7-driven HA internalization and BMP7-mediated prevention/reversal of myofibroblast phenotype. In summary, a novel mechanism of TGF-β1 antagonism by BMP7 is shown and identifies alteration in HA as critical in mediating BMP7 responses. In addition, we identify Hyal2 and CD44v7/8 as new potential targets for manipulation in prevention and reversal of fibrotic pathology.
- APA
- Adam C Midgley, Lucy Duggal, Robert Jenkins, Vincent Hascall, Robert Steadman, Aled O Phillips, & Soma Meran (2015). Hyaluronan reglerar Bone Morphogenetic Protein-7-beroende förebyggande och reversering av myofibroblast-fenotyp. https://fasciaresearchdatabase.com/hyaluronan-regulates-bone-morphogenetic-protein-7-dependent-prevention-and-reversal-of-myofibroblast-phenotype/
- MLA
- Adam C Midgley, et al. "Hyaluronan reglerar Bone Morphogenetic Protein-7-beroende förebyggande och reversering av myofibroblast-fenotyp." 2015, https://fasciaresearchdatabase.com/hyaluronan-regulates-bone-morphogenetic-protein-7-dependent-prevention-and-reversal-of-myofibroblast-phenotype/.
- Chicago
- Adam C Midgley et al. 2015. "Hyaluronan reglerar Bone Morphogenetic Protein-7-beroende förebyggande och reversering av myofibroblast-fenotyp.". https://fasciaresearchdatabase.com/hyaluronan-regulates-bone-morphogenetic-protein-7-dependent-prevention-and-reversal-of-myofibroblast-phenotype/
- B2012Hyaluronan injection in murine osteoarthritis prevents TGFbeta 1-induced synovial neovascularization and fibrosis and maintains articular cartilage integrity by a CD44-dependent mechanism
- B2015Hyaluronan Controls the Deposition of Fibronectin and Collagen and Modulates TGF-β1 Induction of Lung Myofibroblasts
- 1A+2008Tissue Stretch Decreases Soluble TGF-β1 and Type-1 Procollagen in Mouse Subcutaneous Connective Tissue: Evidence From Ex Vivo and In Vivo Models
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