Condello S, Morgan C A, Nagdas S, Cao L, Turek J, Hurley T D, Matei D
Department of Medicine, Indianapolis, IN, USA.
Department of Biochemistry and Molecular Biology, Indianapolis, IN, USA.
Oncogene. 2015 Apr 30;34(18):2297-308. doi: 10.1038/onc.2014.178. Epub 2014 Jun 23.
Cancer cells form three-dimensional (3D) multicellular aggregates (or spheroids) under non-adherent culture conditions. In ovarian cancer (OC), spheroids serve as a vehicle for cancer cell dissemination in the peritoneal cavity, protecting cells from environmental stress-induced anoikis. To identify new targetable molecules in OC spheroids, we investigated gene expression profiles and networks upregulated in 3D vs traditional monolayer culture conditions. We identified ALDH1A1, a cancer stem cell marker as being overexpressed in OC spheroids and directly connected to key elements of the β-catenin pathway. β-Catenin function and ALDH1A1 expression were increased in OC spheroids vs monolayers and in successive spheroid generations, suggesting that 3D aggregates are enriched in cells with stem cell characteristics. β-Catenin knockdown decreased ALDH1A1 expression levels and β-catenin co-immunoprecipitated with the ALDH1A1 promoter, suggesting that ALDH1A1 is a direct β-catenin target. Both short interfering RNA-mediated β-catenin knockdown and A37 ((ethyl-2-((4-oxo-3-(3-(pryrrolidin-1-yl)propyl)-3,4-dihydrobenzo [4,5]thioeno [3,2-d]pyrimidin-2-yl)thio)acetate)), a novel ALDH1A1 small-molecule enzymatic inhibitor described here for the first time, disrupted OC spheroid formation and cell viability (P<0.001). β-Catenin knockdown blocked tumor growth and peritoneal metastasis in an OC xenograft model. These data strongly support the role of β-catenin-regulated ALDH1A1 in the maintenance of OC spheroids and propose new ALDH1A1 inhibitors targeting this cell population.
癌细胞在非贴壁培养条件下形成三维(3D)多细胞聚集体(即球体)。在卵巢癌(OC)中,球体充当癌细胞在腹腔内播散的载体,保护细胞免受环境应激诱导的失巢凋亡。为了鉴定OC球体中可靶向的新分子,我们研究了在3D培养条件与传统单层培养条件下上调的基因表达谱和网络。我们鉴定出癌症干细胞标志物醛脱氢酶1A1(ALDH1A1)在OC球体中过表达,并与β-连环蛋白信号通路的关键元件直接相关。与单层培养相比,OC球体以及连续传代的球体中β-连环蛋白功能和ALDH1A1表达均增加,这表明3D聚集体中富含具有干细胞特征的细胞。β-连环蛋白敲低降低了ALDH1A1表达水平,并且β-连环蛋白与ALDH1A1启动子进行了共免疫沉淀,提示ALDH1A1是β-连环蛋白的直接靶点。短干扰RNA介导的β-连环蛋白敲低和A37(首次在此描述的新型ALDH1A1小分子酶抑制剂,化学名称为(ethyl-2-((4-oxo-3-(3-(pryrrolidin-1-yl)propyl)-3,4-dihydrobenzo [4,5]thioeno [3,2-d]pyrimidin-2-yl)thio)acetate))均破坏了OC球体的形成和细胞活力(P<0.001)。β-连环蛋白敲低阻断了OC异种移植模型中的肿瘤生长和腹膜转移。这些数据有力地支持了β-连环蛋白调节的ALDH1A1在维持OC球体中的作用,并提出了针对这一细胞群体的新型ALDH1A1抑制剂。