Mga, a dual-specificity transcription factor that interacts with Max and contains a T-domain DNA-binding motif
- PMID: 10601024
- PMCID: PMC1171765
- DOI: 10.1093/emboj/18.24.7019
Mga, a dual-specificity transcription factor that interacts with Max and contains a T-domain DNA-binding motif
Erratum in
- EMBO J 2000 Jul 17;19(14):3841
Abstract
The basic-helix-loop-helix-leucine zipper (bHLHZip) proteins Myc, Mad and Mnt are part of a transcription activation/repression system involved in the regulation of cell proliferation. The function of these proteins as transcription factors is mediated by heterodimerization with the small bHLHZip protein Max, which is required for their specific DNA binding to E-box sequences. We have identified a novel Max-interacting protein, Mga, which contains a Myc-like bHLHZip motif, but otherwise shows no relationship with Myc or other Max-interacting proteins. Like Myc, Mad and Mnt proteins, Mga requires heterodimerization with Max for binding to the preferred Myc-Max-binding site CACGTG. In addition to the bHLHZip domain, Mga contains a second DNA-binding domain: the T-box or T-domain. The T-domain is a highly conserved DNA-binding motif originally defined in Brachyury and characteristic of the Tbx family of transcription factors. Mga binds the preferred Brachyury-binding sequence and represses transcription of reporter genes containing promoter-proximal Brachyury-binding sites. Surprisingly, Mga is converted to a transcription activator of both Myc-Max and Brachyury site-containing reporters in a Max-dependent manner. Our results suggest that Mga functions as a dual-specificity transcription factor that regulates the expression of both Max-network and T-box family target genes.
Similar articles
-
Design and properties of a Myc derivative that efficiently homodimerizes.Oncogene. 1998 Nov 12;17(19):2463-72. doi: 10.1038/sj.onc.1202199. Oncogene. 1998. PMID: 9824157
-
Mnt, a novel Max-interacting protein is coexpressed with Myc in proliferating cells and mediates repression at Myc binding sites.Genes Dev. 1997 Jan 1;11(1):44-58. doi: 10.1101/gad.11.1.44. Genes Dev. 1997. PMID: 9000049
-
Structure, function, and dynamics of the dimerization and DNA-binding domain of oncogenic transcription factor v-Myc.J Mol Biol. 2001 Apr 13;307(5):1395-410. doi: 10.1006/jmbi.2001.4537. J Mol Biol. 2001. PMID: 11292350
-
The basic region/helix-loop-helix/leucine zipper domain of Myc proto-oncoproteins: function and regulation.Oncogene. 1999 May 13;18(19):2955-66. doi: 10.1038/sj.onc.1202750. Oncogene. 1999. PMID: 10378692 Review.
-
The Myc/Max/Mad network and the transcriptional control of cell behavior.Annu Rev Cell Dev Biol. 2000;16:653-99. doi: 10.1146/annurev.cellbio.16.1.653. Annu Rev Cell Dev Biol. 2000. PMID: 11031250 Review.
Cited by
-
The tbx/bHLH transcription factor mga regulates gata4 and organogenesis.Dev Dyn. 2010 Feb;239(2):535-47. doi: 10.1002/dvdy.22197. Dev Dyn. 2010. PMID: 20044811 Free PMC article.
-
Normal and Neoplastic Growth Suppression by the Extended Myc Network.Cells. 2022 Feb 21;11(4):747. doi: 10.3390/cells11040747. Cells. 2022. PMID: 35203395 Free PMC article. Review.
-
Pan-cancer Alterations of the MYC Oncogene and Its Proximal Network across the Cancer Genome Atlas.Cell Syst. 2018 Mar 28;6(3):282-300.e2. doi: 10.1016/j.cels.2018.03.003. Cell Syst. 2018. PMID: 29596783 Free PMC article.
-
Evolution of the Max and Mlx networks in animals.Genome Biol Evol. 2011;3:915-37. doi: 10.1093/gbe/evr082. Epub 2011 Aug 22. Genome Biol Evol. 2011. PMID: 21859806 Free PMC article.
-
A recurrent novel MGA-NUTM1 fusion identifies a new subtype of high-grade spindle cell sarcoma.Cold Spring Harb Mol Case Stud. 2018 Dec 17;4(6):a003194. doi: 10.1101/mcs.a003194. Print 2018 Dec. Cold Spring Harb Mol Case Stud. 2018. PMID: 30552129 Free PMC article.
Publication types
MeSH terms
Substances
Associated data
- Actions
Grants and funding
LinkOut - more resources
Full Text Sources
Molecular Biology Databases