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首页> 外文期刊>Journal of Molecular Biology >Allosteric remodelling of the histone H3 binding pocket in the Pygo2 PHD finger triggered by its binding to the B9L/BCL9 co-factor.
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Allosteric remodelling of the histone H3 binding pocket in the Pygo2 PHD finger triggered by its binding to the B9L/BCL9 co-factor.

机译:Pygo2 PHD手指中的组蛋白H3结合口袋的变构重构,由其与B9L / BCL9辅助因子的结合触发。

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摘要

The Zn-coordinated PHD fingers of Pygopus (Pygo) proteins are critical for beta-catenin-dependent transcriptional switches in normal and malignant tissues. They bind to methylated histone H3 tails, assisted by their BCL9 co-factors whose homology domain 1 (HD1) binds to the rear PHD surface. Although histone-binding residues are identical between the two human Pygo paralogs, we show here that Pygo2 complexes exhibit slightly higher binding affinities for methylated histone H3 tail peptides than Pygo1 complexes. We solved the crystal structure of the Pygo2 PHD-BCL9-2 HD1 complex, which revealed paralog-specific interactions in its PHD-HD1 interface that could contribute indirectly to its elevated affinity for the methylated histone H3 tail. Interestingly, using NMR spectroscopy, we discovered that HD1 binding to PHD triggers an allosteric communication with a conserved isoleucine residue that lines the binding channel for histone H3 threonine 3 (T3), the link between the two adjacent binding pockets accommodating histone H3 alanine 1 and methylated lysine 4, respectively. This modulates the surface of the T3 channel, providing a plausible explanation as to how BCL9 co-factors binding to Pygo PHD fingers impact indirectly on their histone binding affinity. Intriguingly, this allosteric modulation of the T3 channel is propagated through the PHD structural core by a highly conserved tryptophan, the signature residue defining the PHD subclass of Zn fingers, which suggests that other PHD proteins may also be assisted by co-factors in their decoding of modified histone H3 tails.
机译:Pygopu​​s(Pygo)蛋白的Zn协调PHD手指对于正常和恶性组织中依赖于β-catenin的转录开关至关重要。它们与甲基化的组蛋白H3尾部结合,其BCL9辅助因子的同源性域1(HD1)与后PHD表面结合。尽管组蛋白结合残基在两个人类Pygo旁系同源物之间是相同的,但我们在这里显示Pygo2复合物对甲基化的组蛋白H3尾肽的结合亲和力比Pygo1复合物稍高。我们解决了Pygo2 PHD-BCL9-2 HD1复合物的晶体结构,该复合物揭示了其PHD-HD1接口中的旁系同源物特异性相互作用,这可能间接导致其对甲基化组蛋白H3尾巴的亲和力提高。有趣的是,使用NMR光谱,我们发现HD1与PHD结合会触发与保守的异亮氨酸残基的变构通讯,该残基排成组蛋白H3苏氨酸3(T3)的结合通道,这两个相邻的容纳组蛋白H3丙氨酸1和2的结合口袋之间的联系甲基化赖氨酸4。这调节了T3通道的表面,为结合Pygo PHD手指的BCL9辅因子如何间接影响其组蛋白结合亲和力提供了合理的解释。有趣的是,T3通道的这种变构调制是由高度保守的色氨酸通过PHD结构核心传播的,该色氨酸定义了Zn指的PHD亚类,这表明其他PHD蛋白也可能在其解码过程中受到辅助因子的辅助修饰的组蛋白H3尾巴。

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