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Chasing the FOXO3: Insights into Its New Mitochondrial Lair in Colorectal Cancer Landscape

机译:追逐FOXO3:在结直肠癌领域探究其新的线粒体巢穴

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摘要

Colorectal cancer (CRC) poses a formidable challenge in terms of molecular heterogeneity, as it involves a variety of cancer-related pathways and molecular changes unique to an individual’s tumor. On the other hand, recent advances in DNA sequencing technologies provide an unprecedented capacity to comprehensively identify the genetic alterations resulting in tumorigenesis, raising the hope that new therapeutic approaches based on molecularly targeted drugs may prevent the occurrence of chemoresistance. Regulation of the transcription factor FOXO3a in response to extracellular cues plays a fundamental role in cellular homeostasis, being part of the molecular machinery that drives cells towards survival or death. Indeed, FOXO3a is controlled by a range of external stimuli, which not only influence its transcriptional activity, but also affect its subcellular localization. These regulation mechanisms are mediated by cancer-related signaling pathways that eventually drive changes in FOXO3a post-translational modifications (e.g., phosphorylation). Recent results showed that FOXO3a is imported into the mitochondria in tumor cells and tissues subjected to metabolic stress and cancer therapeutics, where it induces expression of the mitochondrial genome to support mitochondrial metabolism and cell survival. The current review discusses the potential clinical relevance of multidrug therapies that drive cancer cell fate by regulating critical pathways converging on FOXO3a.
机译:大肠癌(CRC)在分子异质性方面提出了巨大的挑战,因为它涉及多种与癌症相关的途径和个体肿瘤特有的分子变化。另一方面,DNA测序技术的最新进展提供了空前的能力,可以全面鉴定导致肿瘤发生的遗传变异,从而提高了人们对基于分子靶向药物的新治疗方法可以预防化学耐药性的希望。响应细胞外信号而调节转录因子FOXO3a在细胞动态平衡中起着基本作用,是驱动细胞存活或死亡的分子机制的一部分。实际上,FOXO3a受一系列外部刺激的控制,这些外部刺激不仅影响其转录活性,还影响其亚细胞定位。这些调节机制由癌症相关的信号传导途径介导,这些信号传导途径最终驱动FOXO3a翻译后修饰的改变(例如磷酸化)。最近的结果表明,FOXO3a被导入到经受代谢应激和癌症治疗的肿瘤细胞和组织中的线粒体中,在其中它诱导线粒体基因组的表达以支持线粒体代谢和细胞存活。本篇综述讨论了通过调节聚集在FOXO3a上的关键途径来驱动癌细胞命运的多药疗法的潜在临床意义。

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