Literature DB >> 10354281

Role of intron 1 in smooth muscle alpha-actin transcriptional regulation in activated mesangial cells in vivo.

N Kawada1, T Moriyama, A Ando, T Koyama, M Hori, T Miwa, E Imai.   

Abstract

BACKGROUND: The activation of glomerular mesangial cells is one of the early, important features of progressive glomerular disease. Smooth muscle alpha-actin (SMalphaA) is an excellent marker of activated mesangial cells. However, the mechanisms of SMalphaA regulation are only available from in vitro investigation.
METHODS: We examined in vivo promoter analysis of the SMalphaA gene-utilizing transgenic mice harboring different promoter regions of the SMalphaA gene fused to chloramphenicol acetyl transferase (CAT). CAT activities were tested in primary cultured mesangial cells and in glomerular legions of Habu venom glomerulonephritis.
RESULTS: The DNA sequence -891 to +3828, which contains exon 1, intron 1, and the first 14 bp of exon 2 in addition to the 5'-flanking sequence of the SMalphaA gene, induced high levels of transcription in activated mesangial cells in in vivo habu venom glomerulonephritis and in cultured mesangial cells derived from transgenic mice. The DNA region -891 to -124 was a positive element in mesangial cells derived from transgenic mice. Deletions (3316 or 137 bp) in intron 1 reduced transcription to undetectable levels. The 137 bp sequence is highly conserved among several species, containing one CArG box element, which is one of the key motifs for transcriptional activation of contractile-related proteins. In vitro transfection analysis failed to demonstrate these positive effects of intron 1 and region -891 to -124. Conclusions. In vivo promoter analysis of the SMalphaA gene provided new information about the transcriptional regulation of SMalphaA in activated mesangial cells. The DNA region -891 to -124 has a positive effect on SMalphaA transcription in cultured mesangial cells. The intron 1 region (+1088 to +1224) plays a pivotal role in SMalphaA transcription in activated mesangial cells in vivo. Further analysis of this conserved region in intron 1, including the CArG motif, will be of great value in understanding the molecular mechanisms of mesangial activation.

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Year:  1999        PMID: 10354281     DOI: 10.1046/j.1523-1755.1999.00475.x

Source DB:  PubMed          Journal:  Kidney Int        ISSN: 0085-2538            Impact factor:   10.612


  2 in total

1.  Angiotensin II type 2 receptor overexpression activates the vascular kinin system and causes vasodilation.

Authors:  Y Tsutsumi; H Matsubara; H Masaki; H Kurihara; S Murasawa; S Takai; M Miyazaki; Y Nozawa; R Ozono; K Nakagawa; T Miwa; N Kawada; Y Mori; Y Shibasaki; Y Tanaka; S Fujiyama; Y Koyama; A Fujiyama; H Takahashi; T Iwasaka
Journal:  J Clin Invest       Date:  1999-10       Impact factor: 14.808

2.  Targeting myofibroblasts in model systems of fibrosis by an artificial alpha-smooth muscle-actin promoter hybrid.

Authors:  Julia Hirschfeld; Julia Maurer; Diana Jung; Monika Kwiecinski; Al Karim Khimji; Hans Peter Dienes; Jochen W U Fries; Margarete Odenthal
Journal:  Mol Biotechnol       Date:  2009-06-24       Impact factor: 2.695

  2 in total

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