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Examining cooperative binding of Sox2 on DC5 regulatory element upon complex formation with Pax6 through excess electron transfer assay

机译:通过过量电子转移分析研究与Pax6形成复合物后Sox2在DC5调控元件上的协同结合

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摘要

Functional cooperativity among transcription factors on regulatory genetic elements is pivotal for milestone decision-making in various cellular processes including mammalian development. However, their molecular interaction during the cooperative binding cannot be precisely understood due to lack of efficient tools for the analyses of protein–DNA interaction in the transcription complex. Here, we demonstrate that photoinduced excess electron transfer assay can be used for analysing cooperativity of proteins in transcription complex using cooperative binding of Pax6 to Sox2 on the regulatory DNA element (DC5 enhancer) as an example. In this assay, BrU-labelled DC5 was introduced for the efficient detection of transferred electrons from Sox2 and Pax6 to the DNA, and guanine base in the complementary strand was replaced with hypoxanthine (I) to block intra-strand electron transfer at the Sox2-binding site. By examining DNA cleavage occurred as a result of the electron transfer process, from tryptophan residues of Sox2 and Pax6 to DNA after irradiation at 280 nm, we not only confirmed their binding to DNA but also observed their increased occupancy on DC5 with respect to that of Sox2 and Pax6 alone as a result of their cooperative interaction.
机译:转录因子在调控遗传元件上的功能协同作用对于包括哺乳动物发育在内的各种细胞过程中的里程碑式决策至关重要。但是,由于缺乏分析转录复合物中蛋白质-DNA相互作用的有效工具,因此无法精确了解它们在合作结合过程中的分子相互作用。在这里,我们证明光诱导的过量电子转移测定法可用于分析转录复合物中蛋白质的协同作用,例如使用Pax6与Sox2在调控DNA元件(DC5增强子)上的协同结合。在此测定法中,引入了 Br U标记的DC5以有效检测从Sox2和Pax6到DNA的转移电子,并且互补链中的鸟嘌呤碱基被次黄嘌呤(I)取代以阻断-在Sox2结合位点进行电子转移。通过检查由于电子转移过程而发生的DNA裂解,从280 nm照射后的Sox2和Pax6的色氨酸残基到DNA,我们不仅证实了它们与DNA的结合,而且观察到它们在DC5上的占有率相对于DNA的增加。单独的Sox2和Pax6是其合作相互作用的结果。

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