乙酰转移酶
组蛋白乙酰转移酶
乙酰化
酶
生物化学
化学
组蛋白
癌细胞
肽
表观遗传学
癌症
肺癌
酶抑制剂
细胞生物学
辅因子
生物
生物活性
癌症研究
酶激活剂
作用机理
限制
HEK 293细胞
细胞
细胞生长
癌变
磷酸化
结构-活动关系
共价键
A549电池
细胞培养
细胞毒性
化学生物学
乙酰转移酶
内生
甲基转移酶
作者
Yi-Hsun Ho,E. SEIPP,Thitiwat Larndate,Rong Huang
标识
DOI:10.1021/acschembio.5c00666
摘要
N-terminal acetyltransferase D (NatD) is a highly selective enzyme that acetylates the α-N-terminal amine of histones H4 and H2A, which share the SGRGK motif. Elevated NatD expression has been observed in lung, colorectal, breast, and bone cancer tissues, and is correlated with poor patient survival in these cancer types. In non-small cell lung cancer, NatD depletion reduces progression by repressing the epithelial-to-mesenchymal transition (EMT). Hence, NatD is a potential epigenetic target for lung cancer. To unravel the functions of NatD, a cell-potent and selective NatD inhibitor is needed to investigate the acetyltransferase activity of NatD in cancer progression. We previously reported potent and selective NatD bisubstrate inhibitors, designed by covalently linking coenzyme A to peptide substrates via an acetyl and propionyl linker. However, these inhibitors are not cell-active, limiting their application for cellular studies. Here, we designed cell-permeable bisubstrate analogs by attaching cell-penetrating peptides (CPP) to the bisubstrate inhibitor. The inhibitor displayed a K i value of 23 nM and effectively reduced cellular Nα-acetylation on histone H4, leading to reduced migration in lung cancer cells by modulating the expression of E -cadherin, N -cadherin, and vimentin. Our findings demonstrate that the CPP-conjugated NatD inhibitor serves as a valuable chemical probe for elucidating the biological roles of NatD in lung cancer, laying the groundwork for future therapeutic strategies targeting NatD.
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