Kawada Kenji, Toda Kosuke, Sakai Yoshiharu
Department of Surgery, Graduate School of Medicine, Kyoto University, 54 Shogoin-Kawara-cho, Sakyo-ku, Kyoto, 606-8507, Japan.
Int J Clin Oncol. 2017 Aug;22(4):651-659. doi: 10.1007/s10147-017-1156-4. Epub 2017 Jun 24.
Mutations of KRAS are found in a variety of human malignancies, including in pancreatic cancer, colorectal cancer, and non-small cell lung cancer at high frequency. To date, no effective treatments that target mutant variants of KRAS have been introduced into clinical practice. In recent years, a number of studies have shown that the oncogene KRAS plays a critical role in controlling cancer metabolism by orchestrating multiple metabolic changes. One of the metabolic hallmarks of malignant tumor cells is their dependency on aerobic glycolysis, known as the Warburg effect. The role of KRAS signaling in the regulation of aerobic glycolysis has been reported in several types of cancer. KRAS-driven cancers are characterized by altered metabolic pathways involving enhanced nutrients uptake, enhanced glycolysis, enhanced glutaminolysis, and elevated synthesis of fatty acids and nucleotides. However, Just how mutated KRAS can coordinate the metabolic shift to promote tumor growth and whether specific metabolic pathways are essential for the tumorigenesis of KRAS-driven cancers are questions which remain to be answered. In this context, the aim of this review is to summarize current data on KRAS-related metabolic alterations in cancer cells. Given that cancer cells rely on changes in metabolism to support their growth and survival, the targeting of metabolic processes may be a potential strategy for treating KRAS-driven cancers.
KRAS突变存在于多种人类恶性肿瘤中,在胰腺癌、结直肠癌和非小细胞肺癌中高频出现。迄今为止,尚未有针对KRAS突变体的有效治疗方法应用于临床实践。近年来,多项研究表明,癌基因KRAS通过协调多种代谢变化,在控制癌症代谢方面发挥关键作用。恶性肿瘤细胞的代谢特征之一是其对有氧糖酵解的依赖,即瓦伯格效应。KRAS信号在几种癌症中对有氧糖酵解的调节作用已有报道。KRAS驱动的癌症的特征是代谢途径改变,包括营养物质摄取增加、糖酵解增强、谷氨酰胺分解增强以及脂肪酸和核苷酸合成增加。然而,突变的KRAS如何协调代谢转变以促进肿瘤生长以及特定的代谢途径对于KRAS驱动的癌症的肿瘤发生是否至关重要,这些问题仍有待解答。在此背景下,本综述的目的是总结目前关于癌细胞中KRAS相关代谢改变的数据。鉴于癌细胞依赖代谢变化来支持其生长和存活,靶向代谢过程可能是治疗KRAS驱动的癌症的一种潜在策略。