Structural determinants of DNA recognition by plant MADS-domain transcription factors
نویسندگان
چکیده
Plant MADS-domain transcription factors act as key regulators of many developmental processes. Despite the wealth of information that exists about these factors, the mechanisms by which they recognize their cognate DNA-binding site, called CArG-box (consensus CCW6GG), and how different MADS-domain proteins achieve DNA-binding specificity, are still largely unknown. We used information from in vivo ChIP-seq experiments, in vitro DNA-binding data and evolutionary conservation to address these important questions. We found that structural characteristics of the DNA play an important role in the DNA binding of plant MADS-domain proteins. The central region of the CArG-box largely resembles a structural motif called 'A-tract', which is characterized by a narrow minor groove and may assist bending of the DNA by MADS-domain proteins. Periodically spaced A-tracts outside the CArG-box suggest additional roles for this structure in the process of DNA binding of these transcription factors. Structural characteristics of the CArG-box not only play an important role in DNA-binding site recognition of MADS-domain proteins, but also partly explain differences in DNA-binding specificity of different members of this transcription factor family and their heteromeric complexes.
منابع مشابه
Structural basis for the oligomerization of the MADS domain transcription factor SEPALLATA3 in Arabidopsis.
In plants, MADS domain transcription factors act as central regulators of diverse developmental pathways. In Arabidopsis thaliana, one of the most central members of this family is SEPALLATA3 (SEP3), which is involved in many aspects of plant reproduction, including floral meristem and floral organ development. SEP3 has been shown to form homo and heterooligomeric complexes with other MADS doma...
متن کاملDNA binding and dimerisation determinants of Antirrhinum majus MADS-box transcription factors.
Members of the MADS-box family of transcription factors are found in eukaryotes ranging from yeast to humans. In plants, MADS-box proteins regulate several developmental processes including flower, fruit and root development. We have investigated the DNA-binding mechanisms used by four such proteins in Antirrhinum majus, SQUA, PLE, DEF and GLO. SQUA differs from the characterised mammalian and ...
متن کاملSequencing and phylogenetic study of APETALA1 homologous gene in garden cress (Lepidium sativum L.)
The flowering process in plants proceeds through the induction of an inflorescence meristem triggered by several pathways. Many of the genes associated with these pathways encode transcription factors of the MADS domain family. The MADS-domain transcription factor APETALA1 (AP1) is a key regulator of flower development. The first step to understand the molecular mechanisms under the function of...
متن کاملMolecular modeling and expression analysis of a MADS-box cDNA from mango (Mangifera indica L.)
MADS-box genes are a large family of transcription factors initially discovered for their role during development of flowers and fruits. The MADS-box transcription factors from animals have been studied by X-ray protein crystallography but those from plants remain to be studied. In this work, a MADS-box cDNA from mango encoding a protein of 254 residues was obtained and compared. Based on phylo...
متن کاملAccepted Blockinoral Blockinpresentations Presentation Blockintitle: Blockintranscription Blockinfactor Blockinbinding Blockinsite Blockinprediction Blockinin Blockinvivo Blockinusing Blockindna Sequence Blockinand Blockinshape Blockinfeatures
The interaction between transcription factors (TFs) and DNA results from a complex interplay between the DNA structure and nucleotide‐amino acid contacts. We previously developed a sequence‐based flexible hidden Markov model approach for TF binding site (TFBS) prediction, the Transcription Factor Flexible Model (TFFM). We describe a novel approach which builds upon the TFFMs by integrating four...
متن کامل