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December 12, 2006Journal of Cellular Biochemistry99 citationsOpen Access

Smooth muscle α‐actin expression and myofibroblast differentiation by TGFβ are dependent upon MK2

ASAnne Marie SousaTufts Medical CenterTLTiegang LiuBeijing University of Chinese MedicineOGOscar E. GuevaraTufts University

Structured PICO

P
Population
Mouse embryonic fibroblasts (MEF) from MK2 knockout (MK2(-/-)) mice and wild-type (WT) mice
I
Intervention
MK2 knockout (disruption of MK2 expression) and TGFbeta treatment
C
Comparator
Wild-type (WT) MEF
O
Outcome
Smooth muscle alpha-actin (smalpha) expression, filamentous actin, and stress fiberssurrogate

MK2 plays a key role in regulating smooth muscle alpha-actin expression and myofibroblast differentiation, suggesting it as a potential therapeutic target for fibrotic diseases like idiopathic pulmonary fibrosis.

Abstract

Fibroblasts play a major role in processes such as wound repair, scarring, and fibrosis. Differentiation into myofibroblasts, characterized by upregulation of smooth muscle alpha-actin (smalpha) in response to profibrotic agents such as TGFbeta is believed to be an important step in fibrosis. Therefore, elucidating mechanisms of myofibroblast differentiation might reveal novel targets in treating diseases such as idiopathic pulmonary fibrosis (IPF). MK2 is a kinase substrate of p38 MAP kinase that mediates some effects of p38 activation on the actin cytoskeleton. Using mouse embryonic fibroblasts (MEF) from MK2 knockout (MK2(-/-)) mice, we demonstrate that disrupting expression of MK2 expression reduces filamentous actin and stress fibers. It also causes MK2(-/-) MEF to express less smalpha than their corresponding wild-type (WT) MEF at baseline and in response to TGFbeta. Furthermore, TGFbeta causes downregulation of smalpha in MK2(-/-) MEF, instead of upregulation observed in WT MEF. Expression of other fibroblast markers, such as collagen, is not altered in MK2(-/-) MEF. Our results further suggest that downregulation of smalpha in MK2(-/-) MEF is not due to lack of activation of serum responsive promoter elements, but probably due to reduced smalpha message stability in these cells. These results indicate that MK2 plays a key role in regulation of smalpha expression, and that targeting MK2 might present a therapeutic approach in managing conditions such as pulmonary fibrosis.

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Cite This Study

Sousa et al. (2006) studied this question.

synapsesocial.com/papers/6a951792b041a48fba9e5ed5https://doi.org/10.1002/jcb.21154
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