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Arabidopsis SEPALLATA proteins differ in cooperative DNA-binding during the formation of floral quartet-like complexes

机译:拟南芥SEPALLATA蛋白在形成花四重奏样复合物的过程中在合作DNA结合方面有所不同

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The SEPALLATA (SEP) genes of Arabidopsis thaliana encode MADS-domain transcription factors that specify the identity of all floral organs. The four Arabidopsis SEP genes function in a largely yet not completely redundant manner. Here, we analysed interactions of the SEP proteins with DNA. All of the proteins were capable of forming tetrameric quartet-like complexes on DNA fragments carrying two sequence elements termed CArG-boxes. Distances between the CArG-boxes for strong cooperative DNA-binding were in the range of 4-6 helical turns. However, SEP1 also bound strongly to CArG-box pairs separated by smaller or larger distances, whereas SEP2 preferred large and SEP4 preferred small inter-site distances for binding. Cooperative binding of SEP3 was comparatively weak for most of the inter-site distances tested. All SEP proteins constituted floral quartet-like complexes together with the floral homeotic proteins APETALA3 (AP3) and PISTILLATA (PI) on the target genes AP3 and SEP3. Our results suggest an important part of an explanation for why the different SEP proteins have largely, but not completely redundant functions in determining floral organ identity: they may bind to largely overlapping, but not identical sets of target genes that differ in the arrangement and spacing of the CArG-boxes in their cis-regulatory regions.
机译:拟南芥的SEPALLATA(SEP)基因编码MADS域转录因子,该因子指定所有花器官的身份。四个拟南芥SEP基因以很大程度上但并非完全冗余的方式起作用。在这里,我们分析了SEP蛋白与DNA的相互作用。所有蛋白质都能够在带有两个称为CArG-boxes的序列元件的DNA片段上形成四聚体四重奏样复合物。 CArG框之间的强合作DNA绑定的距离在4-6螺旋转弯的范围内。但是,SEP1也牢固绑定到以较小或较大距离隔开的CArG-box对,而SEP2首选较大的距离,SEP4首选较小的站点间距离进行绑定。在大多数测试的站点间距离中,SEP3的合作结合相对较弱。所有SEP蛋白与目标基因AP3和SEP3上的花卉同源蛋白APETALA3(AP3)和PISTILLATA(PI)一起构成了花卉四重奏样复合物。我们的结果为解释为什么不同的SEP蛋白在确定花器官身份时具有很大但不完全冗余的功能提供了重要的解释:它们可能与大部分重叠但不相同的靶基因组结合,而它们在排列和间隔方面有所不同CArG盒在其顺式调控区域的分布。

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    《Nucleic Acids Research》 |2014年第17期|共16页
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