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双重抑制赖氨酸特异性去甲基化酶1(LSD1)和组蛋白去乙酰化酶6(HDAC6)可诱导急性髓系白血病细胞对多柔比星敏感。

Dual LSD1 and HDAC6 Inhibition Induces Doxorubicin Sensitivity in Acute Myeloid Leukemia Cells.

作者信息

Bulut Ipek, Lee Adam, Cevatemre Buse, Ruzic Dusan, Belle Roman, Kawamura Akane, Gul Sheraz, Nikolic Katarina, Ganesan A, Acilan Ceyda

机构信息

Graduate School of Health Sciences, Koc University, Sariyer 34450, Turkey.

School of Pharmacy, University of East Anglia, Norwich NR4 7TJ, UK.

出版信息

Cancers (Basel). 2022 Dec 6;14(23):6014. doi: 10.3390/cancers14236014.

Abstract

Defects in epigenetic pathways are key drivers of oncogenic cell proliferation. We developed a LSD1/HDAC6 multitargeting inhibitor (iDual), a hydroxamic acid analogue of the clinical candidate LSD1 inhibitor GSK2879552. iDual inhibits both targets with IC values of 540, 110, and 290 nM, respectively, against LSD1, HDAC6, and HDAC8. We compared its activity to structurally similar control probes that act by HDAC or LSD1 inhibition alone, as well as an inactive null compound. iDual inhibited the growth of leukemia cell lines at a higher level than GSK2879552 with micromolar IC values. Dual engagement with LSD1 and HDAC6 was supported by dose dependent increases in substrate levels, biomarkers, and cellular thermal shift assay. Both histone methylation and acetylation of tubulin were increased, while acetylated histone levels were only mildly affected, indicating selectivity for HDAC6. Downstream gene expression (CD11b, CD86, p21) was also elevated in response to iDual treatment. Remarkably, iDual synergized with doxorubicin, triggering significant levels of apoptosis with a sublethal concentration of the drug. While mechanistic studies did not reveal changes in DNA repair or drug efflux pathways, the expression of AGPAT9, ALOX5, BTG1, HIPK2, IFI44L, and LRP1, previously implicated in doxorubicin sensitivity, was significantly elevated.

摘要

表观遗传途径的缺陷是致癌细胞增殖的关键驱动因素。我们开发了一种LSD1/HDAC6多靶点抑制剂(iDual),它是临床候选LSD1抑制剂GSK2879552的一种异羟肟酸类似物。iDual对LSD1、HDAC6和HDAC8这三个靶点的抑制常数(IC值)分别为540、110和290 nM。我们将其活性与仅通过抑制HDAC或LSD1起作用的结构相似的对照探针以及一种无活性的空白化合物进行了比较。iDual以微摩尔级的IC值抑制白血病细胞系的生长,其抑制水平高于GSK2879552。底物水平、生物标志物和细胞热迁移分析的剂量依赖性增加支持了iDual与LSD1和HDAC6的双重作用。组蛋白甲基化和微管蛋白乙酰化均增加,而乙酰化组蛋白水平仅受到轻微影响,表明对HDAC6具有选择性。iDual处理后,下游基因表达(CD11b、CD86、p21)也有所升高。值得注意的是,iDual与阿霉素协同作用,在药物亚致死浓度下引发显著水平的细胞凋亡。虽然机制研究未发现DNA修复或药物外排途径的变化,但先前与阿霉素敏感性相关的AGPAT9、ALOX5、BTG1、HIPK2、IFI44L和LRP1的表达显著升高。

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