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靶向人 UHRF1 碱基翻转活性的分子工具

A Molecular Tool Targeting the Base-Flipping Activity of Human UHRF1.

机构信息

Laboratoire de Bioimagerie et Pathologies, UMR 7021 CNRS, Faculté de Pharmacie, Université de Strasbourg, Illkirch, France.

Dipartimento di Biotecnologie, Chimica e Farmacia, Dipartimento di Eccellenza 2018-2022, Università degli Studi di Siena, Via Aldo Moro 2, 53100, Siena, Italy.

出版信息

Chemistry. 2019 Oct 17;25(58):13363-13375. doi: 10.1002/chem.201902605. Epub 2019 Sep 13.

Abstract

During DNA replication, ubiquitin-like, containing PHD and RING fingers domains 1 (UHRF1) plays key roles in the inheritance of methylation patterns to daughter strands by recognizing through its SET and RING-associated domain (SRA) the methylated CpGs and recruiting DNA methyltransferase 1 (DNMT1). Herein, our goal is to identify UHRF1 inhibitors targeting the 5'-methylcytosine (5mC) binding pocket of the SRA domain to prevent the recognition and flipping of 5mC and determine the molecular and cellular consequences of this inhibition. For this, we used a multidisciplinary strategy combining virtual screening and molecular modeling with biophysical assays in solution and cells. We identified an anthraquinone compound able to bind to the 5mC binding pocket and inhibit the base-flipping process in the low micromolar range. We also showed in cells that this hit impaired the UHRF1/DNMT1 interaction and decreased the overall methylation of DNA, highlighting the critical role of base flipping for DNMT1 recruitment and providing the first proof of concept of the druggability of the 5mC binding pocket. The selected anthraquinone appears thus as a key tool to investigate the role of UHRF1 in the inheritance of methylation patterns, as well as a starting point for hit-to-lead optimizations.

摘要

在 DNA 复制过程中,含泛素样、含有 PH 和 RING 指结构域的 1 号蛋白(UHRF1)通过其 SET 和 RING 相关结构域(SRA)识别甲基化的 CpG 并招募 DNA 甲基转移酶 1(DNMT1),从而在将甲基化模式遗传给子链方面发挥关键作用。在此,我们的目标是鉴定靶向 SRA 结构域 5'-甲基胞嘧啶(5mC)结合口袋的 UHRF1 抑制剂,以防止 5mC 的识别和翻转,并确定这种抑制的分子和细胞后果。为此,我们采用了结合虚拟筛选和分子建模与溶液和细胞中的生物物理测定的多学科策略。我们鉴定了一种蒽醌化合物,该化合物能够结合到 5mC 结合口袋中,并在低微摩尔范围内抑制碱基翻转过程。我们还在细胞中表明,该化合物会损害 UHRF1/DNMT1 相互作用并降低 DNA 的整体甲基化,这突出了碱基翻转对于 DNMT1 募集的关键作用,并为 5mC 结合口袋的成药性提供了第一个概念验证。因此,所选的蒽醌类化合物既可以作为研究 UHRF1 在甲基化模式遗传中作用的关键工具,也可以作为进一步优化的起点。

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