Literature DB >> 23253249

Whole animal knockout of smooth muscle alpha-actin does not alter excisional wound healing or the fibroblast-to-myofibroblast transition.

James J Tomasek1, Carol J Haaksma, Robert J Schwartz, Eric W Howard.   

Abstract

The contractile phenotype and function of myofibroblasts have been proposed to play a critical role in wound closure. It has been hypothesized that smooth muscle α-actin expressed in myofibroblasts is critical for its formation and function. We have used smooth muscle α-actin-null mice to test this hypothesis. Full-thickness excisional wounds closed at a similar rate in smooth muscle α-actin-null and wild-type mice. In addition, fibroblasts in smooth muscle α-actin-null granulation tissue when immunostained with a monoclonal antibody that recognizes all muscle actin isoforms exhibited a myofibroblast-like distribution and a stress fiber-like pattern, showing that these cells acquired the myofibroblast phenotype. Dermal fibroblasts from smooth muscle α-actin-null and wild-type mice formed stress fibers and supermature focal adhesions, and generated similar amounts of contractile force in response to transforming growth factor-β1. Smooth muscle γ-actin and skeletal muscle α-actin were expressed in smooth muscle α-actin-null myofibroblasts, as shown by immunostaining, real-time polymerase chain reaction, and mass spectrometry. These results show that smooth muscle α-actin is not necessary for myofibroblast formation and function and for wound closure, and that smooth muscle γ-actin and skeletal muscle α-actin may be able to functionally compensate for the lack of smooth muscle α-actin in myofibroblasts.
© 2012 by the Wound Healing Society.

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Year:  2012        PMID: 23253249      PMCID: PMC3540133          DOI: 10.1111/wrr.12001

Source DB:  PubMed          Journal:  Wound Repair Regen        ISSN: 1067-1927            Impact factor:   3.617


  50 in total

1.  A transforming growth factor beta (TGFbeta) control element drives TGFbeta-induced stimulation of smooth muscle alpha-actin gene expression in concert with two CArG elements.

Authors:  M B Hautmann; C S Madsen; G K Owens
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Authors:  I Darby; O Skalli; G Gabbiani
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Authors:  J L Lessard
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Review 4.  Actin isoforms.

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Authors:  J J Mitchell; J L Woodcock-Mitchell; L Perry; J Zhao; R B Low; L Baldor; P M Absher
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8.  A smooth muscle-specific monoclonal antibody recognizes smooth muscle actin isozymes.

Authors:  A M Gown; A M Vogel; D Gordon; P L Lu
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Authors:  O Skalli; P Ropraz; A Trzeciak; G Benzonana; D Gillessen; G Gabbiani
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