Ministry of Education Key Laboratory for Membrane-less Organelles & Cellular Dynamics, Hefei National Laboratory for Physical Sciences at the Microscale, the First Affiliated Hospital & School of Life Sciences, University of Science and Technology of China, Hefei, Anhui 230027, P.R. China.
J Phys Chem Lett. 2020 Sep 17;11(18):7932-7938. doi: 10.1021/acs.jpclett.0c02039. Epub 2020 Sep 9.
The first Tudor domain (Tudor1) of PHF20L1 recognizes (non)histone methylation to play versatile roles. However, the underlying ligand-recognition mechanism remains unknown as a closed state revealed in the free-form structure. NMR relaxation dispersion and molecular dynamics simulations suggest a pre-existing low-population conformation with a remarkable rearrangement of aromatic cage residues of PHF20L1 Tudor1. Such an open-form conformation is utilized to recognize lysine 142 methylated DNMT1, a cosolvent, and an NMR fragment screening hit, as revealed by the complex crystal structures. Intriguingly, the ligand binding capacity was enhanced by mutation that tunes up the open-state population only. The recognition of DNMT1 by PHF20L1 was further validated in cancer cells. This conformational selection mechanism will enable the discovery of small molecule inhibitors against the seemingly "undruggable" PHF20L1 Tudor1.
PHF20L1 的第一个 Tudor 结构域(Tudor1)识别(非)组蛋白甲基化,发挥多种作用。然而,由于在自由构象结构中揭示的封闭状态,其潜在的配体识别机制仍不清楚。NMR 弛豫分散和分子动力学模拟表明,存在一个预先存在的低人口构象,PHF20L1 Tudor1 的芳香笼残基发生显著重排。这种开放式构象被用于识别赖氨酸 142 甲基化的 DNMT1、共溶剂和 NMR 片段筛选命中物,这是由复合物晶体结构揭示的。有趣的是,通过突变增强了配体结合能力,仅调节开放状态的种群。PHF20L1 对 DNMT1 的识别在癌细胞中得到进一步验证。这种构象选择机制将能够发现针对看似“不可成药”的 PHF20L1 Tudor1 的小分子抑制剂。