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基于片段设计发现YTHDF2配体。

Discovery of YTHDF2 Ligands by Fragment-Based Design.

作者信息

Invernizzi Annalisa, Nai Francesco, Bedi Rajiv Kumar, Vargas-Rosales Pablo Andrés, Li Yaozong, Bochenkova Elena, Herok Marcin, Zálešák František, Caflisch Amedeo

机构信息

Department of Biochemistry, University of Zurich, CH-8057 Zurich, Switzerland.

出版信息

ACS Bio Med Chem Au. 2025 Jun 27;5(4):753-765. doi: 10.1021/acsbiomedchemau.5c00099. eCollection 2025 Aug 20.

Abstract

-Adenosine methylation is the most abundant modification of mRNA. The three members of the YTH domain family proteins (YTHDF1-3) recognize in the cytoplasm the mA-RNA modification. We screened a library of about 500,000 fragments (i.e., molecules with 11-20 non-hydrogen atoms) by docking into YTHDF2, which resulted in the identification of six active compounds among 47 tested in vitro (hit rate of 13%). The acquisition of 28 analogues of the docking hits provided an additional set of 10 active compounds (IC < 100 μM). Protein crystallography-guided optimization of a ligand-efficient fragment by the synthesis of 32 derivatives culminated in a series of YTHDF2 ligands, which show low-micromolar affinity measured by a fluorescence polarization (FP) assay and a homogeneous time-resolved fluorescence-based (HTRF) assay. The series is characterized by very favorable ligand efficiency (of about 0.3-0.4 kcal/mol per non-hydrogen atom). Compound binds to YTHDF2 according to the FP and HTRF assays with a value of 1.3 μM and an IC value of 11 μM, respectively, and it is selective against all of the other YTH reader proteins. Several compounds of the series bind to the three YTHDF proteins with similar low-micromolar affinity, while they are less potent for YTHDC1 and YTHDC2. In contrast, compounds and bind also to YTHDC2, with of 6.3 and 4.9 μM, respectively. We also disclose six crystal structures of YTHDF2 in the complex with the fragments identified by docking.

摘要

-腺苷甲基化是mRNA中最丰富的修饰。YTH结构域家族蛋白的三个成员(YTHDF1-3)在细胞质中识别m⁶A-RNA修饰。我们通过对接YTHDF2筛选了一个约50万个片段(即含有11-20个非氢原子的分子)的文库,在47个体外测试的化合物中鉴定出6个活性化合物(命中率为13%)。对接命中化合物的28个类似物的获得又提供了10个活性化合物(IC<100μM)。通过合成32种衍生物对一个配体高效片段进行蛋白质晶体学指导的优化,最终得到了一系列YTHDF2配体,通过荧光偏振(FP)测定法和基于均相时间分辨荧光(HTRF)的测定法测得其具有低微摩尔亲和力。该系列的特点是具有非常良好的配体效率(每个非氢原子约0.3-0.4kcal/mol)。根据FP和HTRF测定法,化合物与YTHDF2结合,其Kd值为1.3μM,IC值为11μM,并且对所有其他YTH阅读蛋白具有选择性。该系列中的几种化合物以类似的低微摩尔亲和力与三种YTHDF蛋白结合,而对YTHDC1和YTHDC2的活性较低。相比之下,化合物和也与YTHDC2结合,其Kd分别为6.3和4.9μM。我们还披露了YTHDF2与通过对接鉴定的片段形成复合物的六个晶体结构。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a93/12371494/b4c498f1e5f6/bg5c00099_0001.jpg

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