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微小 RNA 与代谢:重新审视瓦堡效应,重点关注表观遗传学背景与临床应用。

MicroRNAs and Metabolism: Revisiting the Warburg Effect with Emphasis on Epigenetic Background and Clinical Applications.

机构信息

Department of Pediatric Hematology-Oncology, Institute of Pediatrics, University of Debrecen, 4032 Debrecen, Hungary.

出版信息

Biomolecules. 2021 Oct 17;11(10):1531. doi: 10.3390/biom11101531.

Abstract

Since the well-known hallmarks of cancer were described by Hanahan and Weinberg, fundamental advances of molecular genomic technologies resulted in the discovery of novel puzzle pieces in the multistep pathogenesis of cancer. MicroRNAs are involved in the altered epigenetic pattern and metabolic phenotype of malignantly transformed cells. They contribute to the initiation, progression and metastasis-formation of cancers, also interacting with oncogenes, tumor-suppressor genes and epigenetic modifiers. Metabolic reprogramming of cancer cells results from the dysregulation of a complex network, in which microRNAs are located at central hubs. MicroRNAs regulate the expression of several metabolic enzymes, including tumor-specific isoforms. Therefore, they have a direct impact on the levels of metabolites, also influencing epigenetic pattern due to the metabolite cofactors of chromatin modifiers. Targets of microRNAs include numerous epigenetic enzymes, such as sirtuins, which are key regulators of cellular metabolic homeostasis. A better understanding of reversible epigenetic and metabolic alterations opened up new horizons in the personalized treatment of cancer. MicroRNA expression levels can be utilized in differential diagnosis, prognosis stratification and prediction of chemoresistance. The therapeutic modulation of microRNA levels is an area of particular interest that provides a promising tool for restoring altered metabolism of cancer cells.

摘要

自 Hanahan 和 Weinberg 描述了著名的癌症特征以来,分子基因组技术的重大进展导致在癌症多步骤发病机制中发现了新的谜题。microRNAs 参与恶性转化细胞表观遗传模式和代谢表型的改变。它们有助于癌症的发生、进展和转移形成,也与癌基因、肿瘤抑制基因和表观遗传修饰物相互作用。癌细胞的代谢重编程源于复杂网络的失调,microRNAs 位于该网络的中心枢纽。microRNAs 调节包括肿瘤特异性同工型在内的几种代谢酶的表达。因此,它们直接影响代谢物的水平,由于染色质修饰物的代谢物辅助因子,也会影响表观遗传模式。microRNAs 的靶标包括许多表观遗传酶,如 sirtuins,它们是细胞代谢稳态的关键调节剂。对可逆性表观遗传和代谢改变的更好理解为癌症的个体化治疗开辟了新的视野。microRNA 表达水平可用于差异诊断、预后分层和化疗耐药性预测。microRNA 水平的治疗调节是一个特别感兴趣的领域,它为恢复癌细胞改变的代谢提供了一种有前途的工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d48/8533942/d45a0113eaaf/biomolecules-11-01531-g001.jpg

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