Laboratory of Molecular Biology, Wageningen University, 6708PB Wageningen, The Netherlands.
Proc Natl Acad Sci U S A. 2012 Jan 31;109(5):1560-5. doi: 10.1073/pnas.1112871109. Epub 2012 Jan 11.
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 stages of flower development. By applying a targeted proteomics approach we were able to establish a MADS-domain protein interactome that strongly supports a mechanistic link between MADS-domain proteins and chromatin remodeling factors. Furthermore, members of other transcription factor families were identified as interaction partners of floral MADS-domain proteins suggesting various specific combinatorial modes of action.
花器官是由 MADS 结构域转录因子的组合作用来特化的,但 MADS 结构域蛋白激活或抑制其靶基因表达的机制以及它们的辅因子的性质在很大程度上仍然未知。在这里,我们使用亲和纯化和质谱法表明,五个主要的花同源异型 MADS 结构域蛋白(AP1、AP3、PI、AG 和 SEP3)在花组织中相互作用,正如“花四聚体”模型所提出的那样。体外研究证实,MADS 结构域蛋白复合物的组成具有灵活性,这取决于相对蛋白质浓度和 DNA 序列。原位双分子荧光互补测定表明,MADS 结构域蛋白在花发育的分生组织阶段相互作用。通过应用靶向蛋白质组学方法,我们能够建立一个 MADS 结构域蛋白相互作用组,这强烈支持了 MADS 结构域蛋白与染色质重塑因子之间的机制联系。此外,还鉴定出其他转录因子家族的成员是花 MADS 结构域蛋白的相互作用伙伴,这表明存在各种特定的组合作用模式。