Wolfe Kara, Kamata Ryo, Coutinho Kester, Inoue Takanari, Sasaki Atsuo T
Division of Hematology and Oncology, Department of Internal Medicine, University of Cincinnati College of Medicine, Cincinnati, OH, United States.
Department of Cancer Biology, University of Cincinnati College of Medicine, OH, United States.
Front Oncol. 2020 Nov 2;10:554272. doi: 10.3389/fonc.2020.554272. eCollection 2020.
Despite advances in targeted therapeutics and understanding in molecular mechanisms, metastasis remains a substantial obstacle for cancer treatment. Acquired genetic mutations and transcriptional changes can promote the spread of primary tumor cells to distant tissues. Additionally, recent studies have uncovered that metabolic reprogramming of cancer cells is tightly associated with cancer metastasis. However, whether intracellular metabolism is spatially and temporally regulated for cancer cell migration and invasion is understudied. In this review, we highlight the emergence of a concept, termed "membraneless metabolic compartmentalization, as one of the critical mechanisms that determines the metastatic capacity of cancer cells. In particular, we focus on the compartmentalization of purine nucleotide metabolism (e.g., ATP and GTP) at the leading edge of migrating cancer cells through the uniquely phase-separated microdomains where dynamic exchange of nucleotide metabolic enzymes takes place. We will discuss how future insights may usher in a novel class of therapeutics specifically targeting the metabolic compartmentalization that drives tumor metastasis.
尽管在靶向治疗和分子机制理解方面取得了进展,但转移仍然是癌症治疗的重大障碍。获得性基因突变和转录变化可促进原发性肿瘤细胞向远处组织扩散。此外,最近的研究发现癌细胞的代谢重编程与癌症转移密切相关。然而,细胞内代谢是否在空间和时间上对癌细胞迁移和侵袭进行调控仍未得到充分研究。在这篇综述中,我们强调了一个被称为“无膜代谢区室化”概念的出现,它是决定癌细胞转移能力的关键机制之一。特别地,我们关注嘌呤核苷酸代谢(如ATP和GTP)在迁移癌细胞前沿通过独特的相分离微区进行的区室化,在这些微区中发生核苷酸代谢酶的动态交换。我们将讨论未来的见解如何可能带来一类专门针对驱动肿瘤转移的代谢区室化的新型疗法。