Coronel-Hernández Jossimar, Pérez-Yépez Eloy Andrés, Delgado-Waldo Izamary, Contreras-Romero Carlos, Jacobo-Herrera Nadia, Cantú-De León David, Pérez-Plasencia Carlos
Laboratorio de Genómica, Instituto Nacional de Cancerología, Mexico City, Mexico.
Cátedra-CONACYT, Dirección de Cátedras, Consejo Nacional de Ciencia y Tecnología (CONACYT), Mexico City, Mexico.
Front Oncol. 2021 Oct 8;11:676562. doi: 10.3389/fonc.2021.676562. eCollection 2021.
Aberrant metabolism is arising interest in the scientific community not only because of the role it plays in the development and establishment of the tumor mass but also the possibility of drug poisoning of key enzymes overexpressed in tumor cells. Moreover, tumor metabolism provides key molecules to maintain the epigenetic changes that are also an undisputed characteristic of each tumor type. This metabolic change includes the Warburg effect and alterations in key pathways involved in glutaminolysis, pentose phosphate, and unsaturated fatty acid biosynthesis. Modifications in all these pathways have consequences that impact genetics and epigenetics processes such as DNA methylation patterns, histone post-translational modifications, triggering oncogenes activation, and loss in tumor suppressor gene expression to lead the tumor establishment. In this review, we describe the metabolic rearrangement and its association with epigenetic regulation in breast cancer, as well as its implication in biological processes involved in cancer progression. A better understanding of these processes could help to find new targets for the diagnosis, prognosis, and treatment of this human health problem.
异常代谢不仅因其在肿瘤块的发展和形成中所起的作用,还因其可能导致肿瘤细胞中过表达的关键酶发生药物中毒,而引起了科学界的关注。此外,肿瘤代谢提供关键分子以维持表观遗传变化,这也是每种肿瘤类型无可争议的特征。这种代谢变化包括瓦伯格效应以及参与谷氨酰胺分解、磷酸戊糖和不饱和脂肪酸生物合成的关键途径的改变。所有这些途径的改变都会产生影响遗传和表观遗传过程的后果,如DNA甲基化模式、组蛋白翻译后修饰、触发癌基因激活以及肿瘤抑制基因表达丧失,从而导致肿瘤形成。在本综述中,我们描述了乳腺癌中的代谢重排及其与表观遗传调控的关联,以及其在癌症进展所涉及的生物学过程中的意义。更好地理解这些过程有助于找到针对这一人类健康问题的诊断、预后和治疗的新靶点。