Literature DB >> 17301086

A homeo-paired domain-binding motif directs Myf5 expression in progenitor cells of limb muscle.

Astrid Buchberger1, Diana Freitag, Hans-Henning Arnold.   

Abstract

Recruitment of multipotent mesodermal cells to the myogenic lineage is mediated by the transcription factor Myf5, the first of the myogenic regulatory factors to be expressed in most sites of myogenesis in the mouse embryo. Among numerous elements controlling the spatiotemporal pattern of Myf5 expression, the -58/-56 kb distal Myf5 enhancer directs expression in myogenic progenitor cells in limbs and in somites. Here, we show by site-directed mutagenesis within this enhancer that a predicted homeobox adjacent to a putative paired domain-binding site is required for the activity in muscle precursor cells in limbs and strongly contributes to expression in somites. By contrast, predicted binding sites for Tcf/Lef, Mef3 and Smad transcription factors play no apparent role for the expression in limbs but might participate in the control in somites. A 30mer oligonucleotide sequence containing and surrounding the homeo and paired domain-binding motifs directs faithful expression in myogenic cells in limbs and also enhances myotomal expression in somites. Pax3 and Meox2 transcription factors can bind to these consensus sites in vitro and therefore constitute potential regulators. However, genetic evidence in the Meox2-deficient mouse mutant argues against a role for Meox2 in the regulation of Myf5 expression. The data presented here demonstrate that a composite homeo and paired domain-binding motif within the -58/-56 enhancer is required and sufficient for activation of the Myf5 gene in muscle progenitor cells in the limb. Although Pax3 constitutes a potential cognate transcription factor for the enhancer, it fails to transactivate the site in transfection experiments.

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Year:  2007        PMID: 17301086     DOI: 10.1242/dev.02798

Source DB:  PubMed          Journal:  Development        ISSN: 0950-1991            Impact factor:   6.868


  22 in total

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Review 3.  Hox genes and regional patterning of the vertebrate body plan.

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Review 4.  Transcriptional mechanisms regulating skeletal muscle differentiation, growth and homeostasis.

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5.  The Msx1 Homeoprotein Recruits Polycomb to the Nuclear Periphery during Development.

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6.  Pax7 activates myogenic genes by recruitment of a histone methyltransferase complex.

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7.  β-Arrestin scaffolds and signaling elements essential for the obestatin/GPR39 system that determine the myogenic program in human myoblast cells.

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8.  Embryonic and fetal limb myogenic cells are derived from developmentally distinct progenitors and have different requirements for beta-catenin.

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Journal:  Genes Dev       Date:  2009-04-03       Impact factor: 11.361

9.  Pax3 synergizes with Gli2 and Zic1 in transactivating the Myf5 epaxial somite enhancer.

Authors:  Charis L Himeda; Marietta V Barro; Charles P Emerson
Journal:  Dev Biol       Date:  2013-09-10       Impact factor: 3.582

10.  Credentialing a preclinical mouse model of alveolar rhabdomyosarcoma.

Authors:  Koichi Nishijo; Qing-Rong Chen; Lei Zhang; Amanda T McCleish; Andrea Rodriguez; Min Jung Cho; Suresh I Prajapati; Jonathan A L Gelfond; Gary B Chisholm; Joel E Michalek; Bruce J Aronow; Frederic G Barr; R Lor Randall; Marc Ladanyi; Stephen J Qualman; Brian P Rubin; Robin D LeGallo; Chiayeng Wang; Javed Khan; Charles Keller
Journal:  Cancer Res       Date:  2009-04-01       Impact factor: 12.701

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