Área de Medicina Experimental y Traslacional, Departamento de Ciencias de la Salud, 27786Universidad Autónoma Metropolitana-Iztapalapa, Mexico City, Mexico.
Posgrado en Biología Experimental, DCBS, Universidad Autónoma Metrolitana-Iztapalapa, Mexico City, Mexico.
Technol Cancer Res Treat. 2022 Jan-Dec;21:15330338221144446. doi: 10.1177/15330338221144446.
Cancer cells are characterized by accelerated proliferation and an outstanding adaptation of their metabolic pathways to meet energy demands. The folate cycle, also known as folate metabolism or one-carbon metabolism, through enzymatic interconversions, provides metabolites necessary for nucleotide synthesis, methylation, and reduction power, helping to maintain the high rate of proliferation; therefore, the study of this metabolic pathway is of great importance in the study of cancer. Moreover, multiple enzymes involved in this cycle have been implicated in different types of cancer, corroborating the cell's adaptations under this pathology. During the last decade, nonalcoholic fatty liver disease has emerged as the leading etiology related to the rise in the incidence and deaths of hepatocellular carcinoma. Specifically, cholesterol accumulation has been a determinant promoter of tumor formation, with solid evidence that an enriched-cholesterol diet plays a crucial role in accelerating the development of an aggressive subtype of hepatocellular carcinoma compared to other models. In this review, we will discuss the most recent findings to understand the contribution of folate metabolism to cancer cells and tumor microenvironment while creating a link between the dynamics given by cholesterol and methylenetetrahydrofolate dehydrogenase 1-like, a key enzyme of the cycle located in the mitochondrial compartment.
癌细胞的特征是增殖加速,以及其代谢途径的出色适应性,以满足能量需求。叶酸循环,也称为叶酸代谢或一碳代谢,通过酶的相互转化,提供核苷酸合成、甲基化和还原力所需的代谢物,有助于维持高增殖率;因此,研究这条代谢途径对于癌症研究非常重要。此外,该循环中涉及的多种酶与不同类型的癌症有关,证实了细胞在这种病理下的适应性。在过去的十年中,非酒精性脂肪性肝病已成为导致肝细胞癌发病率和死亡率上升的主要病因。具体来说,胆固醇积累一直是肿瘤形成的决定促进因素,有确凿的证据表明,富含胆固醇的饮食在加速侵袭性肝细胞癌亚型的发展方面起着至关重要的作用,而这种作用优于其他模型。在这篇综述中,我们将讨论最近的发现,以了解叶酸代谢对癌细胞和肿瘤微环境的贡献,同时在胆固醇和位于线粒体区室的循环关键酶亚甲基四氢叶酸脱氢酶 1 样之间建立联系。