» Articles » PMID: 24006486

Differential Topical Susceptibility to TGFβ in Intact and Injured Regions of the Epithelium: Key Role in Myofibroblast Transition

Overview
Journal Mol Biol Cell
Date 2013 Sep 6
PMID 24006486
Citations 28
Authors
Affiliations
Soon will be listed here.
Abstract

Induction of epithelial-myofibroblast transition (EMyT), a robust fibrogenic phenotype change hallmarked by α-smooth muscle actin (SMA) expression, requires transforming growth factor-β1 (TGFβ) and the absence/uncoupling of intracellular contacts. This suggests that an "injured" epithelium may be topically susceptible to TGFβ. To explore this concept, we use an epithelial wound model in which intact and contact-deprived regions of the same monolayer can be analyzed simultaneously. We show that TGFβ elicits dramatically different responses at these two loci. SMA expression and initially enhanced nuclear Smad3 accumulation followed by Smad3 mRNA and protein down-regulation occur exclusively at the wound. Mechanistically, three transcriptional coactivators whose localization is regulated by cell contact integrity are critical for these local effects. These are myocardin-related transcription factor (MRTF), the driver of the SMA promoter; β-catenin, which counteracts the known inhibitory effect of Smad3 on MRTF and maintains MRTF protein stability and mRNA expression in the wound; and TAZ, a Hippo effector and Smad3 retention factor. Remarkably, active TAZ stimulates the SMA and suppresses the Smad3 promoter, whereas TAZ silencing prevents wound-restricted expression of SMA and loss of Smad3. Such locus-specific reprogramming might play key roles in wound healing and the susceptibility of the injured epithelium to fibrogenesis.

Citing Articles

Transcriptomics of tissue exosomes to investigate miR-195-5p's amelioration of endometrial fibrosis via the YAP-Smad7 pathway: an animal study.

Chen J, Huang Q, Chen W, Wu J, Zheng L, You H J Transl Med. 2024; 22(1):1050.

PMID: 39574130 PMC: 11580480. DOI: 10.1186/s12967-024-05871-8.


The Role of Hippo Signaling Pathway and ILK in the Pathophysiology of Human Hypertrophic Scars and Keloids: An Immunohistochemical Investigation.

Petrou I, Nikou S, Madduri S, Nifora M, Bravou V, Kalbermatten D Cells. 2022; 11(21).

PMID: 36359821 PMC: 9657014. DOI: 10.3390/cells11213426.


MRTF: Basic Biology and Role in Kidney Disease.

Miranda M, Lichner Z, Szaszi K, Kapus A Int J Mol Sci. 2021; 22(11).

PMID: 34204945 PMC: 8199744. DOI: 10.3390/ijms22116040.


Nucleocytoplasmic Shuttling of the Mechanosensitive Transcription Factors MRTF and YAP /TAZ.

Kofler M, Kapus A Methods Mol Biol. 2021; 2299:197-216.

PMID: 34028745 DOI: 10.1007/978-1-0716-1382-5_15.


Evasion of apoptosis by myofibroblasts: a hallmark of fibrotic diseases.

Hinz B, Lagares D Nat Rev Rheumatol. 2019; 16(1):11-31.

PMID: 31792399 PMC: 7913072. DOI: 10.1038/s41584-019-0324-5.


References
1.
Sebe A, Masszi A, Zulys M, Yeung T, Speight P, Rotstein O . Rac, PAK and p38 regulate cell contact-dependent nuclear translocation of myocardin-related transcription factor. FEBS Lett. 2007; 582(2):291-8. PMC: 5047756. DOI: 10.1016/j.febslet.2007.12.021. View

2.
Hinz B, Celetta G, Tomasek J, Gabbiani G, Chaponnier C . Alpha-smooth muscle actin expression upregulates fibroblast contractile activity. Mol Biol Cell. 2001; 12(9):2730-41. PMC: 59708. DOI: 10.1091/mbc.12.9.2730. View

3.
Zhang H, Liu C, Zha Z, Zhao B, Yao J, Zhao S . TEAD transcription factors mediate the function of TAZ in cell growth and epithelial-mesenchymal transition. J Biol Chem. 2009; 284(20):13355-13362. PMC: 2679435. DOI: 10.1074/jbc.M900843200. View

4.
Varelas X, Sakuma R, Samavarchi-Tehrani P, Peerani R, Rao B, Dembowy J . TAZ controls Smad nucleocytoplasmic shuttling and regulates human embryonic stem-cell self-renewal. Nat Cell Biol. 2008; 10(7):837-48. DOI: 10.1038/ncb1748. View

5.
Ashcroft G, Yang X, Glick A, Weinstein M, Letterio J, Mizel D . Mice lacking Smad3 show accelerated wound healing and an impaired local inflammatory response. Nat Cell Biol. 1999; 1(5):260-6. DOI: 10.1038/12971. View