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CAIX-Mediated Control of LIN28/let-7 Axis Contributes to Metabolic Adaptation of Breast Cancer Cells to Hypoxia

机译:CAIX介导的LIN28 / Let-7轴控制有助于乳腺癌细胞对缺氧的代谢调整

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摘要

Solid tumors, including breast cancer, are characterized by the hypoxic microenvironment, extracellular acidosis, and chemoresistance. Hypoxia marker, carbonic anhydrase IX (CAIX), is a pH regulator providing a selective survival advantage to cancer cells through intracellular neutralization while facilitating tumor invasion by extracellular acidification. The expression of CAIX in breast cancer patients is associated with poor prognosis and metastases. Importantly, CAIX-positive hypoxic tumor regions are enriched in cancer stem cells (CSCs). Here we investigated the biological effects of CA9-silencing in breast cancer cell lines. We found that CAIX-downregulation in hypoxia led to increased levels of let-7 (lethal-7) family members. Simultaneously with the increase of let-7 miRNAs in CAIX-suppressed cells, LIN28 protein levels decreased, along with downstream metabolic pathways: pyruvate dehydrogenase kinase 1 (PDK1) and phosphorylation of its substrate, pyruvate dehydrogenase (PDH) at Ser-232, causing attenuation of glycolysis. In addition to perturbed glycolysis, CAIX-knockouts, in correlation with decreased LIN28 (as CSC reprogramming factor), also exhibit reduction of the further CSC-associated markers NANOG (Homeobox protein NANOG) and ALDH1 (Aldehyde dehydrogenase isoform 1). Oppositely, overexpression of CAIX leads to the enhancement of LIN28, ALDH1, and NANOG. In conclusion, CAIX-driven regulation of the LIN28/let-7 axis augments glycolytic metabolism and enhances stem cell markers expression during CAIX-mediated adaptation to hypoxia and acidosis in carcinogenesis.
机译:固体肿瘤,包括乳腺癌,其特征在于缺氧微环境,细胞外酸中毒和化学性。缺氧标记,碳酸酐酶IX(CAIX)是一种pH调节剂,通过细胞内中和,为癌细胞提供选择性存活优势,同时促进肿瘤侵蚀通过细胞外酸化。 CAIX在乳腺癌患者中的表达与预后和转移差有关。重要的是,Caix阳性缺氧肿瘤区域富集癌症干细胞(CSC)。在这里,我们研究了Ca9-沉默在乳腺癌细胞系中的生物学效应。我们发现缺氧中的CAIX下调导致Let-7(六勒-7)家庭成员的水平增加。同时随着CAIX-抑制细胞中的Let-7 miRNA的增加,Lin28蛋白水平降低,以及下游代谢途径:丙酮酸脱氢酶激酶1(PDK1)和Ser-232的丙酮酸脱氢酶(PDH)的磷酸化,导致丙酮酸脱氢酶(PDH)。糖酵解衰减。除了扰动糖酵解,CAIX敲除与LIN28降低(作为CSC重编程因子)相关性,还表现出另外的CSC相关标记纳米(Homeobox蛋白纳米)和Aldh1(醛脱氢酶同种型1)的降低。相反,CAIX的过表达导致LIN28,ALDH1和NANOG的增强。总之,CAIX驱动的LIN28 / Let-7轴增强糖酵解代谢的调节,并增强CAIX介导的适应症缺氧和酸中毒中的干细胞标志物表达。

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