Laboratory of Apoptosis and Tumour Metabolism, Cancer Research UK, The Beatson Institute for Cancer Research, Glasgow G61 1BD, UK.
Acta Oncol. 2012 Mar;51(3):301-10. doi: 10.3109/0284186X.2011.643823. Epub 2012 Jan 30.
Lipids are best known for their fundamental role in forming biological membranes and as intracellular signalling molecules. Interactions between proteins and lipids are central to nearly every cellular process yet these crucial relationships often go overlooked. Changes or switches in the lipid profile of a cell drastically affects cellular metabolism and signal transduction. In relationship to cancer, upregulation of lipid metabolism is often observed during the early stages of neoplasia and is a recognised hallmark of many types of cancer.
We performed a comprehensive review of the literature using PubMed regarding lipid metabolism in cancer and the importance of protein-lipid interactions in the function of mitochondria.
An increase in the basal rate of de novo lipogenesis generates a substantial rise in the saturated fatty acid content of cellular membranes. The ensuing alteration in the acyl chain profile of phospholipids has severe consequences on the function of organelles and membrane-bound proteins, and result in a host of pathologies including the cardiac disorder Barth Syndrome.
Although increased lipogenesis is specifically selected for during cellular transformation it remains unclear if it confers an advantage for survival or is a byproduct of more global changes in cellular metabolism. We discuss the current data regarding the potential of targeting the lipogenic switch as a cancer therapy. In addition, we describe the importance of mitochondrial phospholipid composition during a number mitochondria-driven events observed to have roles in cancer. We specifically highlight the function of cardiolipin in maintaining mitochondrial structure, regulating mitochondrial dynamics and bioenergetics as well as its contributions to mitophagy/autophagy and apoptosis.
脂质最广为人知的作用是形成生物膜和作为细胞内信号分子。蛋白质和脂质之间的相互作用是几乎所有细胞过程的核心,但这些关键关系往往被忽视。细胞脂质谱的变化或开关会极大地影响细胞代谢和信号转导。在癌症方面,肿瘤发生的早期阶段经常观察到脂质代谢的上调,这是许多类型癌症的公认标志。
我们使用 PubMed 对癌症中的脂质代谢以及蛋白质-脂质相互作用在线粒体功能中的重要性进行了全面的文献综述。
从头合成脂肪酸的基础速率增加会导致细胞内细胞膜中饱和脂肪酸含量的大量增加。磷脂酰基链谱的随后改变对细胞器和膜结合蛋白的功能有严重的后果,并导致一系列病理学,包括心脏疾病 Barth 综合征。
虽然细胞转化过程中特别选择了增加的脂肪生成,但尚不清楚它是否为生存提供了优势,或者是细胞代谢更广泛变化的副产品。我们讨论了目前关于靶向脂肪生成开关作为癌症治疗的潜在性的数据。此外,我们描述了在线粒体驱动的事件中,线粒体磷脂组成的重要性,这些事件被认为在癌症中起作用。我们特别强调了心磷脂在维持线粒体结构、调节线粒体动力学和生物能学以及对噬线粒体自噬和细胞凋亡的贡献。