The DNA Binding Diversity of the SIX Homeodomain Transcription Factor Family

被引:0
|
作者
Barreto, Anthony R. Rivera
Papa, Riccardo
Hoffmann, Federico
Martinez, Jose A. Rodriguez
机构
[1] Biology, University of Puerto Rico Rio Piedras Campus, PRSan Juan
[2] University of Puerto Rico Rio Piedras Campus, PRSan Juan
来源
FASEB JOURNAL | 2022年 / 36卷
基金
美国国家科学基金会;
关键词
D O I
10.1096/fasebj.2022.36.S1.R6185
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Transcription factor (TF) DNA-binding specificity is determined by how their DNA-binding domain (DBD) interacts with DNA. TFs are identified by the sequence homology shared with described DBDs, which allows them to be classified into families. It is highly widely accepted that similar DBDs recognize similar DNA motifs. However, changes in a TF can lead to changes in its DNA recognition. TFs are critical for development and have been found since the beginning of animals, how their DNA binding changes through time has not been fully studied. TFs members of the sine oculis homeobox (SIX) homeodomain family are found from sponges to humans and are considered atypical members of the homeodomain family. They regulate numerous developmental processes, with phenotypic features spanning from eye development in flies, red color patterning in Heliconius butterfly wings to brain development in humans. How evolutionary related TFs diversify their function has not been fully understood, especially changes to their DNA binding specificity. Using full length SIX proteins from Drosophila melanogaster, Heliconius erato, and Homo sapiens, we performed in vitro Systematic Evolution of Ligands by Exponential Enrichment (SELEX-seq) to identify the DNA binding specificity. Our preliminary data shows the majority bind to their canonical binding motif (TGATAC), except for six4 members which prefer TGACAC. Interestingly, the way they bind to these motifs differs. Both sine oculis and six4 homologs require a 5'-GA flanking the core motif. While optix related members prefer a shorter flaking region with less dependence on 5'-GA. This is interesting since optix is more evolutionarily related to six4 than to sine oculis. In addition, we found that Heliconius erato optix can bind both as a homodimer with a preferred spacing of 2-bp between binding sites or as a monomer. Our results provide new insights in the binding diversity found in the SIX family of TFs and predict genomic targets of these understudied TF family. © FASEB.
引用
收藏
页数:1
相关论文
共 50 条
  • [1] Determination of the DNA-binding specificity of the extant SIX transcription factor family
    Avellanet-Crespo, Yeriel
    Velazquez, Rosalba
    Rodriguez-Martinez, Jose
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2024, 300 (03) : S463 - S463
  • [2] Binding Regularities in Complexes of Transcription Factors with Operator DNA: Homeodomain Family
    Chirgadze, Yu. N.
    Zheltukhin, E. I.
    Polozov, R. V.
    Sivozhelezov, V. S.
    Ivanov, V. V.
    JOURNAL OF BIOMOLECULAR STRUCTURE & DYNAMICS, 2009, 26 (06): : 687 - 700
  • [3] Discovery, optimization and validation of an optimal DNA-binding sequence for the Six1 homeodomain transcription factor
    Liu, Yubing
    Nandi, Soumyadeep
    Martel, Andre
    Antoun, Alen
    Ioshikhes, Ilya
    Blais, Alexandre
    NUCLEIC ACIDS RESEARCH, 2012, 40 (17) : 8227 - 8239
  • [4] Uncovering the DNA Binding Diversity of the Six Family of Transcription Factors in Drosophila melanogaster and Heliconius erato
    Rivera Barreto, Anthony
    Papa, Riccardo
    Rodriguez Martinez, Jose
    FASEB JOURNAL, 2021, 35
  • [5] The flexibility of a homeodomain transcription factor heterodimer and its allosteric regulation by DNA binding
    Mathiasen, Lisa
    Valentini, Erica
    Boivin, Stephane
    Cattaneo, Angela
    Blasi, Francesco
    Svergun, Dmitri I.
    Bruckmann, Chiara
    FEBS JOURNAL, 2016, 283 (16) : 3134 - 3154
  • [6] Crystal structure and DNA binding of the homeodomain of the stem cell transcription factor Nanog
    Jauch, Ralf
    Ng, Calista Keow Leng
    Saikatendu, Kumar Singh
    Stevens, Raymond G.
    Kolatkar, Prasanna R.
    JOURNAL OF MOLECULAR BIOLOGY, 2008, 376 (03) : 758 - 770
  • [7] Conformational stability and DNA binding energetics of the rat thyroid transcription factor 1 homeodomain
    Del Vecchio, Pompea
    Carullo, Paola
    Barone, Guido
    Pagano, Bruno
    Graziano, Giuseppe
    Iannetti, Alessio
    Acquaviva, Renato
    Leonardi, Antonio
    Formisano, Silvestro
    PROTEINS-STRUCTURE FUNCTION AND BIOINFORMATICS, 2008, 70 (03) : 748 - 760
  • [8] DNA-BINDING SPECIFICITIES OF THE GATA TRANSCRIPTION FACTOR FAMILY
    KO, LJ
    ENGEL, JD
    MOLECULAR AND CELLULAR BIOLOGY, 1993, 13 (07) : 4011 - 4022
  • [9] BIOPHYSICAL AND STRUCTURAL ANALYSIS OF ANTENNAPEDIA AND ULTRABITHORAX HOMEODOMAIN TRANSCRIPTION FACTOR-DNA BINDING AFFINITIES
    Loss, Jeanmarie W.
    Orlomoski, Rachel J.
    Dresch, Jacqueline M.
    Drewell, Robert A.
    Spratt, Donald E.
    PROTEIN SCIENCE, 2019, 28 : 142 - 142
  • [10] A homeodomain transcription factor regulates the DNA replication checkpoint in yeast
    Purtill, Frances S.
    Whitehall, Simon K.
    Williams, Emma S.
    McInerny, Christopher J.
    Sharrocks, Andrew D.
    Morgan, Brian A.
    CELL CYCLE, 2011, 10 (04) : 664 - 670