DNA Binding Site

Accessions: MA0036.4.1 (JASPAR 2024), MA0036.4.2 (JASPAR 2024), MA1839.2.14 (JASPAR 2024), MA1839.2.19 (JASPAR 2024), MA2031.2.12 (JASPAR 2024), MA2031.2.4 (JASPAR 2024), MA2312.1.12 (JASPAR 2024), MA2312.1.14 (JASPAR 2024), MA2312.1.17 (JASPAR 2024)
Organisms: Homo sapiens, Drosophila melanogaster, Arabidopsis thaliana
Libraries: JASPAR 2024 1
1 Rauluseviciute I, Riudavets-Puig R, Blanc-Mathieu R, Castro-Mondragon JA, Ferenc K, Kumar V, Lemma RB, Lucas J, Cheneby J, Baranasic D, Khan A, Fornes O, Gundersen S, Johansen M, Hovig E, Lenhard B, Sandelin A, Wasserman WW, Parcy F, Mathelier A. JASPAR 2024: 20th anniversary of the open-access database of transcription factor binding profiles. Nucleic Acids Res : (2023). [Pubmed]
Length: 7
Sequence: CTTATCA
Type: Heterodimer
Binding TFs: P23769 (GATA zinc finger)
Q9LZ21 (Myb-like DNA-binding domain)
Q95TF1 (Zinc-finger associated domain (zf-AD) )
P23769
P91623
Q95TF1
Q9LZ21
Binding Motifs: MA0036.4 CTTATCT
MA1839.2 CTTATCA
MA2031.2 CTTATCy
MA2312.1 CTTATCa
Publications: Merika M., Orkin S. H. DNA-binding specificity of GATA family transcription factors. Mol. Cell. Biol. 13:3999-4010 (1993). [Pubmed]

Zhu LJ, Christensen RG, Kazemian M, Hull CJ, Enuameh MS, Basciotta MD, Brasefield JA, Zhu C, Asriyan Y, Lapointe DS, Sinha S, Wolfe SA, Brodsky MH. FlyFactorSurvey: a database of Drosophila transcription factor binding specificities determined using the bacterial one-hybrid system. Nucleic Acids Res : (2011). [Pubmed]

Weirauch MT, Yang A, Albu M, Cote AG, Montenegro-Montero A, Drewe P, Najafabadi HS, Lambert SA, Mann I, Cook K, Zheng H, Goity A, van Bakel H, Lozano JC, Galli M, Lewsey MG, Huang E, Mukherjee T, Chen X, Reece-Hoyes JS, Govindarajan S, Shaulsky G, et al. Determination and inference of eukaryotic transcription factor sequence specificity. Cell. 2014 Sep 11;158(6):1431-43. doi: 10.1016/j.cell.2014.08.009. [Pubmed]

Nitta KR, Jolma A, Yin Y, Morgunova E, Kivioja T, Akhtar J, Hens K, Toivonen J, Deplancke B, Furlong EE, Taipale J. Conservation of transcription factor binding specificities across 600 million years of bilateria evolution. Elife : (2015). [Pubmed]

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These data are available AS IS and at your own risk. The EEAD/CSIC do not give any representation or warranty nor assume any liability or responsibility for the data nor the results posted (whether as to their accuracy, completeness, quality or otherwise). Access to these data is available free of charge for ordinary use in the course of research. Downloaded data have CC-BY-NC-SA license. FootprintDB is also available at RSAT::Plants, part of the INB/ELIXIR-ES resources portfolio.