首页> 外文期刊>The Journal of biological chemistry >Structural Insights into c-Myc-interacting Zinc Finger Protein-1 (Miz-1) Delineate Domains Required for DNA Scanning and Sequence-specific Binding
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Structural Insights into c-Myc-interacting Zinc Finger Protein-1 (Miz-1) Delineate Domains Required for DNA Scanning and Sequence-specific Binding

机译:对c-Myc相互作用的锌指蛋白1(Miz-1)的结构见解描绘了DNA扫描和序列特异性结合所需的结构域

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c-Myc-interacting zinc finger protein-1 (Miz-1) is a poly-Cys2His2 zinc finger (ZF) transcriptional regulator of many cell cycle genes. A Miz-1 DNA sequence consensus has recently been identified and has also unveiled Miz-1 functions in other cellular processes, underscoring its importance in the cell. Miz-1 contains 13 ZFs, but it is unknown why Miz-1 has so many ZFs and whether they recognize and bind DNA sequences in a typical fashion. Here, we used NMR to deduce the role of Miz-1 ZFs 1–4 in detecting the Miz-1 consensus sequence and preventing nonspecific DNA binding. In the construct containing the first 4 ZFs, we observed that ZFs 3 and 4 form an unusual compact and stable structure that restricts their motions. Disruption of this compact structure by an electrostatically mismatched A86K mutation profoundly affected the DNA binding properties of the WT construct. On the one hand, Miz1–4WT was found to bind the Miz-1 DNA consensus sequence weakly and through ZFs 1–3 only. On the other hand, the four ZFs in the structurally destabilized Miz1–4A86K mutant bound to the DNA consensus with a 30-fold increase in affinity (100 nm). The formation of such a thermodynamically stable but nonspecific complex is expected to slow down the rate of DNA scanning by Miz-1 during the search for its consensus sequence. Interestingly, we found that the motif stabilizing the compact structure between ZFs 3 and 4 is conserved and enriched in other long poly-ZF proteins. As discussed in detail, our findings support a general role of compact inter-ZF structures in minimizing the formation of off-target DNA complexes.
机译:c-Myc相互作用的锌指蛋白1(Miz-1)是许多细胞周期基因的多聚Cys2His2锌指(ZF)转录调节因子。最近已经确定了Miz-1 DNA序列的共识,并且还揭示了Miz-1在其他细胞过程中的功能,强调了其在细胞中的重要性。 Miz-1包含13个ZF,但未知Miz-1为什么有这么多ZF,以及它们是否以典型方式识别和结合DNA序列。在这里,我们使用NMR推断了Miz-1 ZF 1-4在检测Miz-1共有序列和防止非特异性DNA结合中的作用。在包含前4个ZF的构建体中,我们观察到ZF 3和4形成了异常的紧凑而稳定的结构,从而限制了它们的运动。静电失配的A86K突变破坏了这种紧密结构,深刻影响了WT构建体的DNA结合特性。一方面,发现Miz1-4WT仅通过ZF 1-3弱结合Miz-1 DNA共有序列。另一方面,结构不稳定的Miz1-4A86K突变体中的四个ZF与DNA共有物结合,亲和力增加了30倍(100 nm)。预期这种热力学稳定但非特异性的复合物的形成会减慢Miz-1在寻找其共有序列期间的DNA扫描速度。有趣的是,我们发现稳定ZF 3和4之间紧凑结构的基序在其他长聚ZF蛋白中得到了保守和富集。如详细讨论的,我们的发现支持紧凑的ZF内部结构在使脱靶DNA复合物的形成最小化方面的一般作用。

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