Epigenetic Chemical Biology, Department of Structural Biology and Chemistry, Institut Pasteur, Université Paris Cité, CNRS UMR3523, 75015 Paris, France.
Biological NMR and HDX-MS Technological Platform, Institut Pasteur, Université Paris Cité, CNRS UMR3528, 75015 Paris, France.
ACS Chem Biol. 2022 Jun 17;17(6):1415-1426. doi: 10.1021/acschembio.1c00959. Epub 2022 Jun 1.
Epigenetics has received much attention in the past decade. Many insights on epigenetic (dys)regulation in diseases have been obtained, and clinical therapies targeting them are in place. However, the readers of the epigenetic marks are lacking enlightenment behind this revolution, and it is poorly understood how DNA methylation is being read and translated to chromatin function and cellular responses. Chemical probes targeting the methyl-CpG readers, such as the methyl-CpG binding domain proteins (MBDs), could be used to study this mechanism. We have designed analogues of 5-methylcytosine to probe the MBD domain of human MBD2. By setting up a protein thermal shift assay and an AlphaScreen-based test, we were able to identify three fragments that bind MBD2 alone and disrupt the MBD2-methylated DNA interactions. Two-dimensional NMR experiments and virtual docking gave valuable insights into the interaction of the ligands with the protein showing that the compounds interact with residues that are important for DNA recognition. These constitute the starting point for the design of potent chemical probes for MBD proteins.
表观遗传学在过去十年中受到了广泛关注。人们已经获得了许多关于疾病中表观遗传(失调)调控的见解,并且已经有针对这些靶点的临床治疗方法。然而,在这场革命的背后,读者对 DNA 甲基化的读取和转化为染色质功能和细胞反应的机制仍缺乏了解。针对甲基-CpG 读取器(如甲基-CpG 结合域蛋白 (MBD))的化学探针可用于研究这一机制。我们设计了 5-甲基胞嘧啶的类似物来探测人 MBD2 的 MBD 结构域。通过建立蛋白质热转移测定和基于 AlphaScreen 的测试,我们能够鉴定出三个单独结合 MBD2 并破坏 MBD2-甲基化 DNA 相互作用的片段。二维 NMR 实验和虚拟对接为配体与蛋白质的相互作用提供了有价值的见解,表明化合物与对 DNA 识别很重要的残基相互作用。这些为 MBD 蛋白的有效化学探针的设计提供了起点。