Ianniciello Angela, Rattigan Kevin M, Helgason G Vignir
Wolfson Wohl Cancer Research Centre, Institute of Cancer Sciences, University of Glasgow, Glasgow, United Kingdom.
Front Cell Dev Biol. 2018 Sep 26;6:120. doi: 10.3389/fcell.2018.00120. eCollection 2018.
Discovered over fifty years ago, autophagy is a double-edged blade. On one hand, it regulates cellular energy sources by "cannibalization" of its own cellular components, feeding on proteins and other unused cytoplasmic factors. On the other, it is a recycling process that removes dangerous waste from the cytoplasm keeping the cell clean and healthy. Failure of the autophagic machinery is translated in dysfunction of the immune response, in aging, and in the progression of pathologies such as Parkinson disease, diabetes, and cancer. Further investigation identified autophagy with a protective role in specific types of cancer, whereas in other cases it can promote tumorigenesis. Evidence shows that treatment with chemotherapeutics can upregulate autophagy in order to maintain a stable intracellular environment promoting drug resistance and cell survival. Leukemia, a blood derived cancer, represents one of the malignancies in which autophagy is responsible for drug treatment failure. Inhibition of autophagy is becoming a strategic target for leukemic stem cell (LSC) eradication. Interestingly, the latest findings demonstrate that LSCs show higher levels of mitochondrial metabolism compared to normal stem cells. With this review, we aim to explore the links between autophagy and metabolism in the hematopoietic system, with special focus on primitive LSCs.
自噬在五十多年前就被发现了,它是一把双刃剑。一方面,它通过“吞噬”自身细胞成分来调节细胞能量来源,以蛋白质和其他未使用的细胞质因子为食。另一方面,它是一个循环过程,从细胞质中清除危险废物,保持细胞清洁和健康。自噬机制的失效会转化为免疫反应功能障碍、衰老以及帕金森病、糖尿病和癌症等疾病的进展。进一步的研究发现自噬在特定类型的癌症中具有保护作用,而在其他情况下它可以促进肿瘤发生。有证据表明,化疗药物治疗可以上调自噬,以维持稳定的细胞内环境,促进耐药性和细胞存活。白血病是一种血液来源的癌症,是自噬导致药物治疗失败的恶性肿瘤之一。抑制自噬正成为根除白血病干细胞(LSC)的一个战略靶点。有趣的是,最新研究结果表明,与正常干细胞相比,白血病干细胞表现出更高水平的线粒体代谢。在这篇综述中,我们旨在探讨造血系统中自噬与代谢之间的联系,特别关注原始白血病干细胞。