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      Myofibroblasts exhibit enhanced fibronectin assembly that is intrinsic to their contractile phenotype.

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          Abstract

          Myofibroblasts have increased expression of contractile proteins and display augmented contractility. It is not known if the augmented contractile gene expression characterizing the myofibroblast phenotype impacts its intrinsic ability to assemble fibronectin (FN) and extracellular matrix. In this study we investigated whether myofibroblasts displayed increased rates of FN fibril assembly when compared with their undifferentiated counterparts. Freshly plated myofibroblasts assemble exogenous FN (488-FN) into a fibrillar matrix more rapidly than fibroblasts that have not undergone myofibroblast differentiation. The augmented rate of FN matrix formation by myofibroblasts was dependent on intact Rho/Rho kinase (ROCK) and myosin signals inasmuch as treatment with Y27632 or blebbistatin attenuated 488-FN assembly. Inhibiting contractile gene expression by pharmacologic disruption of the transcription factors megakaryoblastic leukemia-1 (MKL1)/serum response factor (SRF) during myofibroblast differentiation resulted in decreased contractile force generation and attenuated 488-FN incorporation although not FN expression. Furthermore, disruption of the MKL1/SRF target gene, smooth muscle α-actin (α-SMA) via siRNA knockdown resulted in attenuation of 488-FN assembly. In conclusion, this study demonstrates a linkage between increased contractile gene expression, most importantly α-SMA, and the intrinsic capacity of myofibroblasts to assemble exogenous FN into fibrillar extracellular matrix.

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          Author and article information

          Journal
          J. Biol. Chem.
          The Journal of biological chemistry
          American Society for Biochemistry & Molecular Biology (ASBMB)
          1083-351X
          0021-9258
          Mar 13 2015
          : 290
          : 11
          Affiliations
          [1 ] From the Departments of Medicine and.
          [2 ] Surgery, University of Wisconsin-Madison, School of Medicine and Public Health, Madison, Wisconsin 53792.
          [3 ] From the Departments of Medicine and nsandbo@medicine.wisc.edu.
          Article
          M114.606186
          10.1074/jbc.M114.606186
          4358119
          25627685
          55d9eb35-3dbd-4488-8e62-641dc02b61c0
          History

          Extracellular Matrix,Fibroblast,Fibronectin,Megakaryoblastic Leukemia-1,Myofibroblast,Serum Response Factor,Smooth Muscle α-Actin,Transforming Growth Factor β (TGF-B)

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