首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Impact of Protein/Protein Interactions on Global Intermolecular Translocation Rates of the Transcription Factors Sox2 and Oct1 between DNA Cognate Sites Analyzed by z-Exchange NMR Spectroscopy
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Impact of Protein/Protein Interactions on Global Intermolecular Translocation Rates of the Transcription Factors Sox2 and Oct1 between DNA Cognate Sites Analyzed by z-Exchange NMR Spectroscopy

机译:z交换NMR光谱分析蛋白质/蛋白质相互作用对转录因子Sox2和Oct1在DNA同源位点之间的整体分子间移位速率的影响

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摘要

Oct1 and Sox2 synergistically regulate developmental genes by binding to adjacent sites within promoters. We have investigated the kinetics of global intermolecular translocation of Sox2 and Oct1 between cognate sites located on different DNA molecules by z-exchange NMR spectroscopy. In the Hoxb1 promoter, the Sox2 and Oct1 sites are immediately adjacent to one another, and the intermolecular translocation rates are too slow to be measured by z-exchange spectroscopy. By introducing a 3-bp insertion between the Sox2 and Oct1 sites to mimic the spacing in the FGF4 enhancer, the interprotein contact surface is reduced, and the translocation rates are increased. Interaction between Sox2 and the POU-specific domain (POUS) of Oct1 does not affect the translocation mechanism but modulates the rates. Translocation involves only jumping (dissociation and reassociation) for Sox2, but both jumping and direct intersegment transfer (no dissociation into free solution) for Oct1. The dissociation (koff ∼1.5 s−1) and association (kon ∼5.1 × 109 m−1s−1) rate constants for Sox2 are reduced 4-fold and increased 5-fold, respectively, in the presence of Oct1. koff (∼3.5 s−1) for Oct1 is unaffected by Sox2, whereas kon (∼1.3 × 109 m−1s−1) is increased ∼13-fold. The direct intermolecular translocation rate (kinter ∼1.8 × 104 m−1s−1) for the POUS domain of Oct1 is reduced 2-fold by Sox2, whereas that for the POU homeodomain (POUHD) of Oct1 (kinter ∼ 1.7 × 104 m−1s−1) remains unaltered, consistent with the absence of contacts between Sox2 and POUHD. The data suggest a model for the sequence of binding events involved in synergistic gene regulation by Sox2 and Oct1.
机译:Oct1和Sox2通过与启动子内的相邻位点结合来协同调节发育基因。我们已经通过z-exchange NMR光谱研究了位于不同DNA分子上的同源位点之间Sox2和Oct1的全局分子间移位的动力学。在Hoxb1启动子中,Sox2和Oct1位点彼此紧邻,并且分子间移位速率太慢,无法通过z交换光谱法测量。通过在Sox2和Oct1位点之间引入3 bp的插入来模拟FGF4增强子中的间隔,减少了蛋白间的接触表面,并提高了转运速率。 Sox2与Oct1的POU特定域(POUS)之间的相互作用不会影响转运机制,但会调节速率。易位仅涉及Sox2的跳跃(解离和重新关联),但涉及Oct1的跳跃和直接节间转移(不解离成自由溶液)。解离(koff 〜1.5 s -1 )和关联(kon 〜5.1×10 9 m -1 s -1 <在存在Oct1的情况下,Sox2的速率常数分别降低了4倍和5倍。 Oct1的koff(〜3.5 s -1 )不受Sox2的影响,而kon(〜1.3×10 9 m -1 s -1 )增加了约13倍。 Oct1的POUS域的直接分子间移位速率(kinter〜1.8×10 4 m -1 s -1 )降低2-倍被Sox2折叠,而对于Oct1的POU同源域(POUHD)(kinter〜1.7×10 4 m -1 s -1 )保持不变,这与Sox2和POUHD之间没有接触保持一致。数据提示了一个模型,该模型涉及Sox2和Oct1参与协同基因调控的结合事件序列。

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