Departments of Chemistry, The University of Hong Kong, Pokfulam Road, Hong Kong, China.
MOE Key Laboratory of Protein Sciences, Beijing Advanced Innovation Center for Structural Biology, Beijing Frontier Research Center for Biological Structure, Department of Basic Medical Sciences, School of Medicine, Tsinghua University, Beijing 100084, China.
J Am Chem Soc. 2020 Dec 23;142(51):21450-21459. doi: 10.1021/jacs.0c10324. Epub 2020 Dec 11.
YEATS domains are newly identified epigenetic "readers" of histone lysine acetylation (Kac) and crotonylation (Kcr). The malfunction of YEATS-Kac/Kcr interactions has been found to be involved in the pathogenesis of human diseases, such as cancer. These discoveries suggest that the YEATS domains are promising novel drug targets. We and others recently reported the development of YEATS domain inhibitors. Although these inhibitors have a general preference toward the AF9 and ENL YEATS domains, selective inhibitors targeting either YEATS domain are challenging to develop as these two proteins share a high structural similarity. In this study, we identified a proximal site outside the acyllysine-binding pocket that can differentiate AF9 YEATS from ENL YEATS. Combinatorial targeting of both the acyllysine pocket and this additional site by conformationally preorganized cyclopeptides enabled the selective inhibition of the AF9 YEATS domain. The most selective inhibitor, -, showed a 38-fold higher binding affinity toward AF9 YEATS over ENL YEATS. Further investigations indicated that - could engage with AF9 in living cells, disrupt the YEATS-dependent chromatin recruitment of AF9, and suppress the transcription of AF9 target genes.
YEATS 结构域是新发现的组蛋白赖氨酸乙酰化 (Kac) 和巴豆酰化 (Kcr) 的表观遗传“读取器”。已经发现 YEATS-Kac/Kcr 相互作用的功能障碍与人类疾病(如癌症)的发病机制有关。这些发现表明 YEATS 结构域是很有前途的新型药物靶点。我们和其他人最近报道了 YEATS 结构域抑制剂的开发。尽管这些抑制剂对 AF9 和 ENL YEATS 结构域具有普遍的偏好,但开发针对任一 YEATS 结构域的选择性抑制剂具有挑战性,因为这两种蛋白质具有高度相似的结构。在这项研究中,我们鉴定了一个在酰基辅酶结合口袋之外的近端位点,该位点可区分 AF9 YEATS 与 ENL YEATS。通过构象预组织环肽对酰基辅酶口袋和该附加位点的组合靶向,能够选择性抑制 AF9 YEATS 结构域。最具选择性的抑制剂 - 对 AF9 YEATS 的结合亲和力比对 ENL YEATS 高出 38 倍。进一步的研究表明,- 可以与活细胞中的 AF9 结合,破坏 AF9 依赖 YEATS 的染色质募集,并抑制 AF9 靶基因的转录。