Floral organs are specified by the combinatorial action of MADS-domain transcription factors, yet the mechanisms by which MADS-domain proteins activate or repress the expression of their target genes and the nature of their cofactors are still largely unknown. Here, we show using affinity purification and mass spectrometry that five major floral homeotic MADS-domain proteins (AP1, AP3, PI, AG, and SEP3) interact in floral tissues as proposed in the “floral quartet” model. In vitro studies confirmed a flexible composition of MADS-domain protein complexes depending on relative protein concentrations and DNA sequence. In situ bimolecular fluorescent complementation assays demonstrate that MADS-domain proteins interact during meristematic stage...
BACKGROUND: Development of eukaryotic organisms is controlled by transcription factors that trigger ...
To study the importance of intercellular transport for MADS domain transcription factor functioning ...
The molecular mechanisms by which floral homeotic genes act as major developmental switches to speci...
Floral organs are specified by the combinatorial action of MADS-domain transcription factors, yet th...
International audienceFloral organs are specified by the combinatorial action of MADS-domain transcr...
Development of eudicot flowers is under tight developmental control by genes belonging to the MADS b...
Protein-protein and protein-DNA interactions are essential for the molecular action of transcription...
Abstract Background Correct flower formation requires highly specific temporal and spatial regulatio...
International audienceAbstract The MADS transcription factors (TF) are an ancient eukaryotic protein...
Abstract Background MADS domain transcription factors play important roles in various developmental ...
The molecular mechanisms by which floral homeotic genes act as major developmental switches to speci...
In this thesis we investigated the behaviour of fluorescently-tagged MADS domain proteins during flo...
Background: Development of eukaryotic organisms is controlled by transcription factors that trigger ...
MADS domain transcription factors are key regulators of eukaryotic development. In plants, the homeo...
BACKGROUND: Development of eukaryotic organisms is controlled by transcription factors that trigger ...
To study the importance of intercellular transport for MADS domain transcription factor functioning ...
The molecular mechanisms by which floral homeotic genes act as major developmental switches to speci...
Floral organs are specified by the combinatorial action of MADS-domain transcription factors, yet th...
International audienceFloral organs are specified by the combinatorial action of MADS-domain transcr...
Development of eudicot flowers is under tight developmental control by genes belonging to the MADS b...
Protein-protein and protein-DNA interactions are essential for the molecular action of transcription...
Abstract Background Correct flower formation requires highly specific temporal and spatial regulatio...
International audienceAbstract The MADS transcription factors (TF) are an ancient eukaryotic protein...
Abstract Background MADS domain transcription factors play important roles in various developmental ...
The molecular mechanisms by which floral homeotic genes act as major developmental switches to speci...
In this thesis we investigated the behaviour of fluorescently-tagged MADS domain proteins during flo...
Background: Development of eukaryotic organisms is controlled by transcription factors that trigger ...
MADS domain transcription factors are key regulators of eukaryotic development. In plants, the homeo...
BACKGROUND: Development of eukaryotic organisms is controlled by transcription factors that trigger ...
To study the importance of intercellular transport for MADS domain transcription factor functioning ...
The molecular mechanisms by which floral homeotic genes act as major developmental switches to speci...