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Reconstitution of 'floral quartets' in vitro involving class B and class E floral homeotic proteins

机译:重组涉及B类和E类花卉同源蛋白质的'花四重奏'

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Homeotic MADS box genes encoding transcription factors specify the identity of floral organs by interacting in a combinatorial way. The 'floral quartet model', published several years ago, pulled together several lines of evidence suggesting that floral homeotic proteins bind as tetramers to two separated DNA sequence elements termed 'CArG boxes' by looping the intervening DNA. However, experimental support for 'floral quartet' formation remains scarce. Recently, we have shown that the class E floral homeotic protein SEPALLATA3 (SEP3) is sufficient to loop DNA in floral-quartet-like complexes in vitro. Here, we demonstrate that the class B floral homeotic proteins APETALA3 (AP3) and PISTILLATA (PI) do only weakly, at best, form floral-quartet-like structures on their own. However, they can be incorporated into such complexes together with SEP3. The subdomain K3 of SEP3 is of critical importance for the DNA-bound heterotetramers to be formed and is capable to mediate floral quartet formation even in the sequence context of AP3 and PI. Evidence is presented suggesting that complexes composed of SEP3, AP3 and PI form preferentially over other possible complexes. Based on these findings we propose a mechanism of how target gene specificity might be achieved at the level of floral quartet stability.
机译:编码转录因子的同源MADS盒基因通过组合相互作用来确定花器官的身份。几年前发布的“花卉四重模型”汇集了几条证据,表明花卉同源蛋白质通过四聚体结合成两个单体,通过环化中间的DNA环,将它们与称为“ CArG盒”的两个分离的DNA序列元件结合。然而,对“花四重奏”形成的实验支持仍然很少。最近,我们已经显示,E类花卉同源植物蛋白SEPALLATA3(SEP3)足以在体外将DNA修饰成类似花卉四重奏的复合体。在这里,我们证明B类花卉同源蛋白质APETALA3(AP3)和PISTILLATA(PI)只能发挥微弱的作用,充其量只能形成类似花卉四重奏的结构。但是,它们可以与SEP3一起掺入此类复合物中。 SEP3的亚结构域K3对于要形成的与DNA结合的异四聚体至关重要,即使在AP3和PI的序列背景下,它也能够介导花四重奏的形成。证据表明,由SEP3,AP3和PI组成的复合物优先于其他可能的复合物形成。基于这些发现,我们提出了一种在花四重奏稳定性水平上如何实现靶基因特异性的机制。

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