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Structural basis for homeodomain recognition by the cell-cycle regulator Geminin

机译:细胞周期调节剂Geminin识别同源域的结构基础

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摘要

Homeodomain-containing transcription factors play a fundamental role in the regulation of numerous developmental and cellular processes. Their multiple regulatory functions are accomplished through context-dependent inputs of target DNA sequences and collaborating protein partners. Previous studies have well established the sequence-specific DNA binding to homeodomains; however, little is known about how protein partners regulate their functions through targeting homeodomains. Here we report the solution structure of the Hox homeodomain in complex with the cell-cycle regulator, Geminin, which inhibits Hox transcriptional activity and enrolls Hox in cell proliferative control. Side-chain carboxylates of glutamates and aspartates in the C terminus of Geminin generate an overall charge pattern resembling the DNA phosphate backbone. These residues provide electrostatic interactions with homeodomain, which combine with the van der Waals contacts to form the stereospecific complex. We further showed that the interaction with Geminin is homeodomain subclass-selective and Hox paralog-specific, which relies on the stapling role of residues R43 and M54 in helix III and the basic amino acid cluster in the N terminus. Interestingly, we found that the C-terminal residue Ser184 of Geminin could be phosphorylated by Casein kinase II, resulting in the enhanced binding to Hox and more potent inhibitory effect on Hox transcriptional activity, indicating an additional layer of regulation. This structure provides insight into the molecular mechanism underlying homeodomain-protein recognition and may serve as a paradigm for interactions between homeodomains and DNA-competitive peptide inhibitors.
机译:含同源结构域的转录因子在许多发育和细胞过程的调节中起着基本作用。它们的多种调节功能是通过目标DNA序列的上下文相关输入和协作蛋白伴侣来实现的。先前的研究已经很好地建立了与同源域结合的序列特异性DNA。然而,对于蛋白质伴侣如何通过靶向同源域来调节其功能知之甚少。在这里,我们报告了Hox同源域与细胞周期调节剂Geminin结合的溶液结构,Geminin抑制Hox转录活性并使Hox参与细胞增殖控制。在Geminin C末端的谷氨酸和天冬氨酸的侧链羧酸盐产生类似于DNA磷酸骨架的总电荷模式。这些残基提供了与同源域的静电相互作用,并与范德华接触结合形成了立体定向复合物。我们进一步表明,与Geminin的相互作用是同源域亚类选择性和Hox同源同源物特异性的,这依赖于螺旋III和N末端碱性氨基酸簇中残基R43和M54的装订作用。有趣的是,我们发现Geminin的C末端残基Ser184可被酪蛋白激酶II磷酸化,从而导致与Hox的结合增强,对Hox转录活性的抑制作用更强,这表明需要进行额外的调节。该结构提供了对同源域蛋白识别基础的分子机制的了解,并且可以用作同源域和DNA竞争性肽抑制剂之间相互作用的范例。

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