Background - Plant MADS box proteins play important roles in a plethora of developmental processes. In order to regulate specific sets of target genes, MADS box proteins dimerize and are thought to assemble into multimeric complexes. In this study a large-scale yeast three-hybrid screen is utilized to provide insight into the higher-order complex formation capacity of the Arabidopsis MADS box family. SEPALLATA3 (SEP3) has been shown to mediate complex formation and, therefore, special attention is paid to this factor in this study. Results - In total, 106 multimeric complexes were identified; in more than half of these at least one SEP protein was present. Besides the known complexes involved in determining floral organ identity, various co...
International audienceThe MADS transcription factors (TF) constitute an ancient family of TF found i...
Floral organs are specified by the combinatorial action of MADS-domain transcription factors, yet th...
In Arabidopsis, the closely related APETALA1 (AP1) and CAULIFLOWER (CAL) MADS-box genes share overla...
Background - Plant MADS box proteins play important roles in a plethora of developmental processes. ...
The molecular mechanisms by which floral homeotic genes act as major developmental switches to speci...
The molecular mechanisms by which floral homeotic genes act as major developmental switches to speci...
The molecular mechanisms by which floral homeotic genes act as major developmental switches to speci...
The molecular mechanisms by which floral homeotic genes act as major developmental switches to speci...
The molecular mechanisms by which floral homeotic genes act as major developmental switches to speci...
The molecular mechanisms by which floral homeotic genes act as major developmental switches to speci...
The molecular mechanisms by which floral homeotic genes act as major developmental switches to speci...
International audienceThe MADS transcription factors (TF) constitute an ancient family of TF found i...
International audienceThe MADS transcription factors (TF) constitute an ancient family of TF found i...
International audienceThe MADS transcription factors (TF) constitute an ancient family of TF found i...
The MADS transcription factors (TF) constitute an ancient family of TF found in all eukaryotes that ...
International audienceThe MADS transcription factors (TF) constitute an ancient family of TF found i...
Floral organs are specified by the combinatorial action of MADS-domain transcription factors, yet th...
In Arabidopsis, the closely related APETALA1 (AP1) and CAULIFLOWER (CAL) MADS-box genes share overla...
Background - Plant MADS box proteins play important roles in a plethora of developmental processes. ...
The molecular mechanisms by which floral homeotic genes act as major developmental switches to speci...
The molecular mechanisms by which floral homeotic genes act as major developmental switches to speci...
The molecular mechanisms by which floral homeotic genes act as major developmental switches to speci...
The molecular mechanisms by which floral homeotic genes act as major developmental switches to speci...
The molecular mechanisms by which floral homeotic genes act as major developmental switches to speci...
The molecular mechanisms by which floral homeotic genes act as major developmental switches to speci...
The molecular mechanisms by which floral homeotic genes act as major developmental switches to speci...
International audienceThe MADS transcription factors (TF) constitute an ancient family of TF found i...
International audienceThe MADS transcription factors (TF) constitute an ancient family of TF found i...
International audienceThe MADS transcription factors (TF) constitute an ancient family of TF found i...
The MADS transcription factors (TF) constitute an ancient family of TF found in all eukaryotes that ...
International audienceThe MADS transcription factors (TF) constitute an ancient family of TF found i...
Floral organs are specified by the combinatorial action of MADS-domain transcription factors, yet th...
In Arabidopsis, the closely related APETALA1 (AP1) and CAULIFLOWER (CAL) MADS-box genes share overla...