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Controlled inhibition of methyltransferases using photoswitchable peptidomimetics: towards an epigenetic regulation of leukemia

机译:使用光开关拟肽对甲基转移酶的控制抑制:对白血病的表观遗传调控

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摘要

We describe a cell-permeable photoswitchable probe capable of modulating epigenetic cellular states by disruption of an essential protein–protein interaction within the MLL1 methyltransferase core complex. Our azobenzene-containing peptides selectively block the WDR5-MLL1 interaction by binding to WDR5 with high affinity (K i = 1.25 nM). We determined the co-crystal structure of this photoswitchable peptiomimetic with WDR5 to understand the interaction at the atomic level. Importantly, the photoswitchable trans and cis conformers of the probe display a clear difference in their inhibition of MLL1. We further demonstrate that the designed photo-controllable azo-peptidomimetics affect the transcription of the MLL1-target gene Deptor, which regulates hematopoiesis and leukemogenesis, and inhibit the growth of leukemia cells. This strategy demonstrates the potential of photopharmacological inhibition of methyltransferase protein–protein interactions as a novel method for external epigenetic control, providing a new toolbox for controlling epigenetic states.
机译:我们描述了一种细胞可渗透的光开关探针,该探针能够通过破坏MLL1甲基转移酶核心复合物中必不可少的蛋白质-蛋白质相互作用来调节表观遗传细胞状态。我们的含偶氮苯的肽通过以高亲和力(K i = 1.25 nM)与WDR5结合,选择性地阻断WDR5-MLL1相互作用。我们确定了这种光开关拟肽与WDR5的共晶体结构,以了解原子水平上的相互作用。重要的是,探针的光可转换反式和顺式构象异构体在抑制MLL1方面表现出明显的差异。我们进一步证明设计的光可控偶氮拟肽影响MLL1目标基因Deptor的转录,后者调节造血作用和白血病发生,并抑制白血病细胞的生长。该策略证明了光药理学抑制甲基转移酶蛋白-蛋白相互作用的潜力,可以作为一种新的外部表观遗传控制方法,为控制表观遗传状态提供了一个新的工具箱。

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