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基于片段的 AF9 YEATS 结构域抑制剂发现。

Fragment-Based Discovery of AF9 YEATS Domain Inhibitors.

机构信息

Ministry of Education Key Laboratory for Membraneless Organelles & Cellular Dynamics, Biomedical Sciences and Health Laboratory of Anhui Province, Division of Life Sciences and Medicine, University of Science and Technology of China, Hefei 230027, China.

Department of Chemistry, University of Science and Technology of China, Hefei 230026, China.

出版信息

Int J Mol Sci. 2022 Mar 31;23(7):3893. doi: 10.3390/ijms23073893.

Abstract

YEATS (YAF9, ENL, AF9, TAF14, SAS5) family proteins recognize acylated histones and in turn regulate chromatin structure, gene transcription, and stress signaling. The chromosomal translocations of ENL and mixed lineage leukemia are considered oncogenic drivers in acute myeloid leukemia and acute lymphoid leukemia. However, known ENL YEATS domain inhibitors have failed to suppress the proliferation of 60 tested cancer cell lines. Herein, we identified four hits from the NMR fragment-based screening against the AF9 YEATS domain. Ten inhibitors of new chemotypes were then designed and synthesized guided by two complex structures and affinity assays. The complex structures revealed that these inhibitors formed an extra hydrogen bond to AF9, with respect to known ENL inhibitors. Furthermore, these inhibitors demonstrated antiproliferation activities in AF9-sensitive HGC-27 cells, which recapitulated the phenotype of the CRISPR studies against AF9. Our work will provide the basis for further structured-based optimization and reignite the campaign for potent AF9 YEATS inhibitors as a precise treatment for AF9-sensitive cancers.

摘要

YEATS(YAF9、ENL、AF9、TAF14、SAS5)家族蛋白识别酰化组蛋白,进而调节染色质结构、基因转录和应激信号。ENL 和混合谱系白血病的染色体易位被认为是急性髓系白血病和急性淋巴细胞白血病的致癌驱动因素。然而,已知的 ENL YEATS 结构域抑制剂未能抑制 60 种测试的癌细胞系的增殖。在此,我们通过针对 AF9 YEATS 结构域的 NMR 片段筛选鉴定了四个命中化合物。然后,根据两个复合物结构和亲和力测定,设计并合成了十种新型化学型抑制剂。复合物结构表明,与已知的 ENL 抑制剂相比,这些抑制剂与 AF9 形成了额外的氢键。此外,这些抑制剂在 AF9 敏感的 HGC-27 细胞中表现出增殖活性,重现了针对 AF9 的 CRISPR 研究的表型。我们的工作将为进一步的基于结构的优化提供基础,并重新启动寻找强效 AF9 YEATS 抑制剂的活动,将其作为治疗 AF9 敏感癌症的精准疗法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8126/8998803/0ecc4a6badce/ijms-23-03893-g001.jpg

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