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The class E floral homeotic protein SEPALLATA3 is sufficient to loop DNA in 'floral quartet'-like complexes in vitro

机译:E类花同源异型蛋白sEpaLLaTa3足以在体外“花四联体”复合物中循环DNa

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摘要

The organs of a eudicot flower are specified by four functional classes, termed class A, B, C and E, of MADS domain transcription factors. The combinatorial formation of tetrameric complexes, so called ‘floral quartets’, between these classes is widely believed to represent the molecular basis of floral organ identity specification. As constituents of all complexes, the class E floral homeotic proteins are thought to be of critical relevance for the formation of floral quartets. However, experimental support for tetrameric complex formation remains scarce. Here we provide physico-chemical evidence that in vitro homotetramers of the class E floral homeotic protein SEPALLATA3 from Arabidopsis thaliana bind cooperatively to two sequence elements termed ‘CArG boxes’ in a phase-dependent manner involving DNA looping. We further show that the N-terminal part of SEPALLATA3 lacking K3, a subdomain of the protein–protein interactions mediating K domain, and the C-terminal domain, is sufficient for protein dimerization, but not for tetramer formation and cooperative DNA binding. We hypothesize that the capacity of class E MADS domain proteins to form tetrameric complexes contributes significantly to the formation of floral quartets. Our findings further suggest that the spacing and phasing of CArG boxes are important parameters in the molecular mechanism by which floral homeotic proteins achieve target gene specificity.
机译:双子叶植物花的器官由MADS域转录因子的四个功能类别(称为A,B,C和E类别)指定。这些类别之间的四聚体复合物(所谓的“花四重奏”)的组合形成被广泛认为代表了花器官同一性规范的分子基础。作为所有复合物的成分,E类花卉同源蛋白质被认为与花卉四重奏的形成至关重要。但是,仍然缺乏对四聚体复合物形成的实验支持。在这里,我们提供了物理化学证据,证明拟南芥E类花卉同源同源蛋白SEPALLATA3的体外同四聚体以涉及DNA环的相位依赖性方式与称为“ CArG盒”的两个序列元件协同结合。我们进一步表明,缺少K3的SEPALLATA3的N端部分不足以介导K结构域和C端结构域的蛋白质-蛋白质相互作用的子结构域,足以进行蛋白质二聚化,但不足以形成四聚体并与DNA结合。我们假设E类MADS结构域蛋白形成四聚体复合物的能力显着促进了花卉四重奏的形成。我们的发现进一步表明,CArG盒的间隔和定相是花卉同源蛋白质达到目标基因特异性的分子机制中的重要参数。

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