Abstract Background Correct flower formation requires highly specific temporal and spatial regulation of gene expression. In Arabidopsis thaliana the majority of the master regulators that determine flower organ identity belong to the MADS-domain transcription factor family. The canonical DNA binding motif for this transcription factor family is the CArG-box, which has the consensus CC(A/T)6GG. However, so far, a comprehensive analysis of MADS-domain binding patterns has not yet been performed. Results Eight publicly available ChIP-seq datasets of MADS-domain proteins that regulate the floral transition and flower formation were analyzed. Surprisingly, the preferred DNA binding motif of each protein was a CArG-box with an NAA extension. Fur...
Plant MADS-domain transcription factors act as key regulators of many developmental processes. Despi...
MADS domain proteins are members of a highly conserved family found in all eukaryotes. Genetic studi...
Flower development is controlled by the action of key regulatory transcription factors of the MADS-d...
Background Correct flower formation requires highly specific temporal and spatial regulation of gene...
Floral organs are specified by the combinatorial action of MADS-domain transcription factors, yet th...
Protein-protein and protein-DNA interactions are essential for the molecular action of transcriptio...
Floral organs are specified by the combinatorial action of MADS-domain transcription factors, yet th...
Members of the MADS-box transcription factor family play essential roles in almost every development...
International audienceAbstract The MADS transcription factors (TF) are an ancient eukaryotic protein...
Members of the MADS-box transcription factor family play essential roles in almost every development...
Flower development is controlled by the action of key regulatory transcription factors of the MADS-d...
Gene regulation at the level of transcription is crucial for almost all biological processes in a ce...
Background: Development of eukaryotic organisms is controlled by transcription factors that trigger ...
BACKGROUND: Development of eukaryotic organisms is controlled by transcription factors that trigger ...
BACKGROUND: Development of eukaryotic organisms is controlled by transcription factors that trigger ...
Plant MADS-domain transcription factors act as key regulators of many developmental processes. Despi...
MADS domain proteins are members of a highly conserved family found in all eukaryotes. Genetic studi...
Flower development is controlled by the action of key regulatory transcription factors of the MADS-d...
Background Correct flower formation requires highly specific temporal and spatial regulation of gene...
Floral organs are specified by the combinatorial action of MADS-domain transcription factors, yet th...
Protein-protein and protein-DNA interactions are essential for the molecular action of transcriptio...
Floral organs are specified by the combinatorial action of MADS-domain transcription factors, yet th...
Members of the MADS-box transcription factor family play essential roles in almost every development...
International audienceAbstract The MADS transcription factors (TF) are an ancient eukaryotic protein...
Members of the MADS-box transcription factor family play essential roles in almost every development...
Flower development is controlled by the action of key regulatory transcription factors of the MADS-d...
Gene regulation at the level of transcription is crucial for almost all biological processes in a ce...
Background: Development of eukaryotic organisms is controlled by transcription factors that trigger ...
BACKGROUND: Development of eukaryotic organisms is controlled by transcription factors that trigger ...
BACKGROUND: Development of eukaryotic organisms is controlled by transcription factors that trigger ...
Plant MADS-domain transcription factors act as key regulators of many developmental processes. Despi...
MADS domain proteins are members of a highly conserved family found in all eukaryotes. Genetic studi...
Flower development is controlled by the action of key regulatory transcription factors of the MADS-d...