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一种橄榄油酚是一种新型的突变型异柠檬酸脱氢酶 1(IDH1)抑制剂的化学型。

An olive oil phenolic is a new chemotype of mutant isocitrate dehydrogenase 1 (IDH1) inhibitors.

机构信息

Program Against Cancer Therapeutic Resistance (ProCURE), Metabolism and Cancer Group, Catalan Institute of Oncology, Girona, Spain.

Girona Biomedical Research Institute (IDIBGI), Edifici M2, Parc Hospitalari Martí i Julià, Salt, Girona, Spain.

出版信息

Carcinogenesis. 2019 Mar 12;40(1):27-40. doi: 10.1093/carcin/bgy159.

Abstract

Mutations in the isocitrate dehydrogenase 1 (IDH1) gene confer an oncogenic gain-of-function activity that allows the conversion of α-ketoglutarate (α-KG) to the oncometabolite R-2-hydroxyglutarate (2HG). The accumulation of 2HG inhibits α-KG-dependent histone and DNA demethylases, thereby generating genome-wide hypermethylation phenotypes with cancer-initiating properties. Several chemotypes of mutant IDH1/2-targeted inhibitors have been reported, and some of them are under evaluation in clinical trials. However, the recognition of acquired resistance to such inhibitors within a few years of clinical use raises an urgent need to discover new mutant IDH1 antagonists. Here, we report that a naturally occurring phenolic compound in extra-virgin olive oil (EVOO) selectively inhibits the production of 2HG by neomorphic IDH1 mutations. In silico docking, molecular dynamics, including steered simulations, predicted the ability of the oleoside decarboxymethyl oleuropein aglycone (DOA) to preferentially occupy the allosteric pocket of mutant IDH1. DOA inhibited the enzymatic activity of recombinant mutant IDH1 (R132H) protein in the low micromolar range, whereas >10-fold higher concentrations were required to inhibit the activity of wild-type (WT) IDH1. DOA suppressed 2HG overproduction in engineered human cells expressing a heterozygous IDH1-R132H mutation. DOA restored the 2HG-suppressed activity of histone demethylases as it fully reversed the hypermethylation of H3K9me3 in IDH1-mutant cells. DOA epigenetically restored the expression of PD-L1, an immunosuppressive gene silenced in IDH1 mutant cells via 2HG-driven DNA hypermethylation. DOA selectively blocked colony formation of IDH1 mutant cells while sparing WT IDH1 isogenic counterparts. In sum, the EVOO-derived oleoside DOA is a new, naturally occurring chemotype of mutant IDH1 inhibitors.

摘要

IDH1 基因突变赋予致癌的功能获得性活性,使 α-酮戊二酸(α-KG)转化为致癌代谢物 R-2-羟戊二酸(2HG)。2HG 的积累抑制了依赖于 α-KG 的组蛋白和 DNA 去甲基酶,从而产生具有致癌起始特性的全基因组超甲基化表型。已经报道了几种 IDH1/2 突变型靶向抑制剂的化学型,其中一些正在临床试验中进行评估。然而,在临床应用几年内就发现了对这些抑制剂的获得性耐药,这迫切需要发现新的突变型 IDH1 拮抗剂。在这里,我们报告说,特级初榨橄榄油(EVOO)中的一种天然存在的酚类化合物选择性抑制新形成的 IDH1 突变引起的 2HG 的产生。基于计算机的对接、分子动力学,包括定向模拟,预测了橄榄苦苷脱羧甲基橄榄苦苷配基(DOA)优先占据突变型 IDH1 变构口袋的能力。DOA 在低微摩尔范围内抑制重组突变型 IDH1(R132H)蛋白的酶活性,而抑制野生型(WT)IDH1 的活性则需要高出 10 倍的浓度。DOA 抑制表达杂合 IDH1-R132H 突变的工程化人类细胞中 2HG 的过度产生。DOA 抑制了 2HG 抑制的组蛋白去甲基酶的活性,因为它完全逆转了 IDH1 突变细胞中 H3K9me3 的超甲基化。DOA 通过 2HG 驱动的 DNA 超甲基化,使 PD-L1 的表达恢复到正常水平,PD-L1 是一种在 IDH1 突变细胞中被沉默的免疫抑制基因。DOA 选择性地阻止了 IDH1 突变细胞的集落形成,而对 WT IDH1 同型细胞没有影响。总之,特级初榨橄榄油衍生的橄榄苦苷 DOA 是一种新的、天然存在的 IDH1 突变型抑制剂的化学型。

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