Literature DB >> 31461342

Identification of the intermediate filament protein synemin/SYNM as a target of myocardin family coactivators.

Karl Swärd1, Katarzyna K Krawczyk1, Björn Morén1, Baoyi Zhu1,2, Ljubica Matic3, Johan Holmberg1, Ulf Hedin3, Bengt Uvelius4, Karin Stenkula1, Catarina Rippe1.   

Abstract

Myocardin (MYOCD) is a critical regulator of smooth muscle cell (SMC) differentiation, but its transcriptional targets remain to be exhaustively characterized, especially at the protein level. Here we leveraged human RNA and protein expression data to identify novel potential MYOCD targets. Using correlation analyses we found several targets that we could confirm at the protein level, including SORBS1, SLMAP, SYNM, and MCAM. We focused on SYNM, which encodes the intermediate filament protein synemin. SYNM rivalled smooth muscle myosin (MYH11) for SMC specificity and was controlled at the mRNA and protein levels by all myocardin-related transcription factors (MRTFs: MYOCD, MRTF-A/MKL1, and MRTF-B/MKL2). MRTF activity is regulated by the ratio of filamentous to globular actin, and SYNM was accordingly reduced by interventions that depolymerize actin, such as latrunculin treatment and overexpression of constitutively active cofilin. Many MRTF target genes depend on serum response factor (SRF), but SYNM lacked SRF-binding motifs in its proximal promoter, which was not directly regulated by MYOCD. Furthermore, SYNM resisted SRF silencing, yet the time course of induction closely paralleled that of the SRF-dependent target gene ACTA2. SYNM was repressed by the ternary complex factor (TCF) FLI1 and was increased in mouse embryonic fibroblasts lacking three classical TCFs (ELK1, ELK3, and ELK4). Imaging showed colocalization of SYNM with the intermediate filament proteins desmin and vimentin, and MRTF-A/MKL1 increased SYNM-containing intermediate filaments in SMCs. These studies identify SYNM as a novel SRF-independent target of myocardin that is abundantly expressed in all SMCs.

Entities:  

Keywords:  CFL2; DSTN; actin dynamics; lineage markers; phenotypic modulation

Mesh:

Substances:

Year:  2019        PMID: 31461342     DOI: 10.1152/ajpcell.00047.2019

Source DB:  PubMed          Journal:  Am J Physiol Cell Physiol        ISSN: 0363-6143            Impact factor:   4.249


  4 in total

Review 1.  Skeletal and Cardiac Muscle Disorders Caused by Mutations in Genes Encoding Intermediate Filament Proteins.

Authors:  Lorenzo Maggi; Manolis Mavroidis; Stelios Psarras; Yassemi Capetanaki; Giovanna Lattanzi
Journal:  Int J Mol Sci       Date:  2021-04-20       Impact factor: 5.923

Review 2.  Targeting smooth muscle cell phenotypic switching in vascular disease.

Authors:  Raja Chakraborty; Payel Chatterjee; Jui M Dave; Allison C Ostriker; Daniel M Greif; Eva M Rzucidlo; Kathleen A Martin
Journal:  JVS Vasc Sci       Date:  2021-05-15

3.  Myocardin regulates exon usage in smooth muscle cells through induction of splicing regulatory factors.

Authors:  Li Liu; Dmytro Kryvokhyzha; Catarina Rippe; Aishwarya Jacob; Andrea Borreguero-Muñoz; Karin G Stenkula; Ola Hansson; Christopher W J Smith; Steven A Fisher; Karl Swärd
Journal:  Cell Mol Life Sci       Date:  2022-08-01       Impact factor: 9.207

4.  NG2/CSPG4, CD146/MCAM and VAP1/AOC3 are regulated by myocardin-related transcription factors in smooth muscle cells.

Authors:  Catarina Rippe; Björn Morén; Li Liu; Karin G Stenkula; Johan Mustaniemi; Malin Wennström; Karl Swärd
Journal:  Sci Rep       Date:  2021-03-16       Impact factor: 4.379

  4 in total

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