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Myocardin family members drive formation of caveolae

  • Katarzyna K. Krawczyk
    ,
  • Ingrid Yao Mattisson
    ,
  • Mari Ekman
    ,
  • Nikolay Oskolkov
    ,
  • Rebecka Grantinge
    ,
  • Dorota Kotowska
  • Lund University
    ,
  • University of Rochester
Scholary Output:
Contribution to journal
Article
Peer-review

Open access

Abstract

Caveolae are membrane organelles that play roles in glucose and lipid metabolism and in vascular function. Formation of caveolae requires caveolins and cavins. The make-up of caveolae and their density is considered to reflect cell-specific transcriptional control mechanisms for caveolins and cavins, but knowledge regarding regulation of caveolae genes is incomplete. Myocardin (MYOCD) and its relative MRTF-A (MKL1) are transcriptional coactivators that control genes which promote smooth muscle differentiation. MRTF-A communicates changes in actin polymerization to nuclear gene transcription. Here we tested if myocardin family proteins control biogenesis of caveolae via activation of caveolin and cavin transcription. Using human coronary artery smooth muscle cells we found that jasplakinolide and latrunculin B (LatB), substances that promote and inhibit actin polymerization, increased and decreased protein levels of caveolins and cavins, respectively. The effect of LatB was associated with reduced mRNA levels for these genes and this was replicated by the MRTF inhibitor CCG-1423 which was non-additive with LatB. Overexpression of myocardin and MRTF-A caused 5-10-fold induction of caveolins whereas cavin-1 and cavin-2 were induced 2-3-fold. PACSIN2 also increased, establishing positive regulation of caveolae genes from three families. Full regulation of CAV1 was retained in its proximal promoter. Knock down of the serum response factor (SRF), which mediates many of the effects of myocardin, decreased cavin-1 but increased caveolin-1 and-2 mRNAs. Viral transduction of myocardin increased the density of caveolae 5-fold in vitro. A decrease of CAV1 was observed concomitant with a decrease of the smooth muscle marker calponin in aortic aneurysms from mice (C57Bl/6) infused with angiotensin II. Human expression data disclosed correlations of MYOCD with CAV1 in a majority of human tissues and in the heart, correlation with MKL2 (MRTF-B) was observed. The myocardin family of transcriptional coactivators therefore drives formation of caveolae and this effect is largely independent of SRF.

Publication Information

Output type

Scholary Output:
Contribution to journal
Article
Peer-review

Original language

English (US)

Article number

e0133931

Journal (Volume, Issue Number)

PloS one (Volume 10, Issue 8)

Publication milestones

  • Published - 08/05/2015

Publication status

Published - 08/05/2015

ISSN

1932-6203

Publication IDs

  • Scopus: 84941978768
  • PubMed: 26244347

Publication metrics

Metrics

Fractional count
1
Fractional count
0.08
Fractional count
11
Fractional count
0.92
Fractional count
1
Fractional count
1
SciVal
FWCI
1.09
SciVal
Author count
12
SciVal
citations
21
SciVal
Paper percentile
83
Scopus
citations

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1
Citation count
36

Funding Details

FundersFunding number
National Institutes of Health
-
NHLBI
R01HL117907