Literature DB >> 10660673

Cardiac enhancer activity of the homeobox gene tinman depends on CREB consensus binding sites in Drosophila.

T V Venkatesh1, M Park, K Ocorr, J Nemaceck, K Golden, M Wemple, R Bodmer.   

Abstract

The Drosophila homeobox gene tinman plays a critical role in subdividing the early mesoderm. In particular, tinman is absolutely required for formation of the heart and visceral mesoderm. tinman expression is initiated throughout the mesoderm of the trunk region under the control of the bHLH transcription factor encoded by the twist gene, a determinant of all mesoderm. Later, tinman expression is restricted to the dorsal portion of the mesoderm, a process that is directed by decapentaplegic (dpp) whose product (a TGF-beta-related protein) is secreted by the overlaying ectoderm. Further restriction of tinman expression to the cardiac progenitors, in which it will persist throughout development, involves the secreted segmentation gene product encoded by wingless (wg, a Drosophila Wnt gene). Here, we show that strong early expression depends on the synergistic action of an enhancer element at the 5' end of the gene in conjunction with an element in the first intron. Moreover, two distinct enhancer regions are responsible for tinman expression in the heart: one region confers expression in the heart-tube-associated pericardial cells, the other element drives expression in the contractile, myocardial cells. The latter element contains two CREB consensus binding sites that are essential for cardiac-specific expression. genesis 26:55-66, 2000. Copyright 2000 Wiley-Liss, Inc.

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Year:  2000        PMID: 10660673

Source DB:  PubMed          Journal:  Genesis        ISSN: 1526-954X            Impact factor:   2.487


  14 in total

1.  Transcriptional integration of competence modulated by mutual repression generates cell-type specificity within the cardiogenic mesoderm.

Authors:  Zhe Han; Miki Fujioka; Mingtsan Su; Margaret Liu; James B Jaynes; Rolf Bodmer
Journal:  Dev Biol       Date:  2002-12-15       Impact factor: 3.582

2.  A genome-wide screen reveals a role for microRNA-1 in modulating cardiac cell polarity.

Authors:  Isabelle N King; Li Qian; Jianping Liang; Yu Huang; Joseph T C Shieh; Chulan Kwon; Deepak Srivastava
Journal:  Dev Cell       Date:  2011-04-19       Impact factor: 12.270

3.  Spatial specificity of mesodermal even-skipped expression relies on multiple repressor sites.

Authors:  Jiandong Liu; Li Qian; Zhe Han; Xiushan Wu; Rolf Bodmer
Journal:  Dev Biol       Date:  2007-10-25       Impact factor: 3.582

4.  JAK/Stat signaling regulates heart precursor diversification in Drosophila.

Authors:  Aaron N Johnson; Mayssa H Mokalled; Tom N Haden; Eric N Olson
Journal:  Development       Date:  2011-09-28       Impact factor: 6.868

5.  The convergence of Notch and MAPK signaling specifies the blood progenitor fate in the Drosophila mesoderm.

Authors:  Melina Grigorian; Lolitika Mandal; Manuel Hakimi; Irma Ortiz; Volker Hartenstein
Journal:  Dev Biol       Date:  2011-03-05       Impact factor: 3.582

6.  Melatonin increases the regularity of cardiac rhythmicity in the Drosophila heart in both wild-type and strains bearing pathogenic mutations.

Authors:  Tricia VanKirk; Evelyn Powers; Harold B Dowse
Journal:  J Comp Physiol B       Date:  2016-07-22       Impact factor: 2.200

7.  The Drosophila homolog of vertebrate Islet1 is a key component in early cardiogenesis.

Authors:  Tabea Mann; Rolf Bodmer; Petra Pandur
Journal:  Development       Date:  2008-12-15       Impact factor: 6.868

Review 8.  Methods to assess Drosophila heart development, function and aging.

Authors:  Karen Ocorr; Georg Vogler; Rolf Bodmer
Journal:  Methods       Date:  2014-04-12       Impact factor: 3.608

9.  Dystrophin deficiency in Drosophila reduces lifespan and causes a dilated cardiomyopathy phenotype.

Authors:  Ouarda Taghli-Lamallem; Takeshi Akasaka; Grant Hogg; Uri Nudel; David Yaffe; Jeffrey S Chamberlain; Karen Ocorr; Rolf Bodmer
Journal:  Aging Cell       Date:  2008-01-23       Impact factor: 9.304

10.  Defective decapentaplegic signaling results in heart overgrowth and reduced cardiac output in Drosophila.

Authors:  Aaron N Johnson; Lindsey A Burnett; Julia Sellin; Achim Paululat; Stuart J Newfeld
Journal:  Genetics       Date:  2007-05-16       Impact factor: 4.562

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