Kenny Timothy C, Birsoy Kıvanç
Laboratory of Metabolic Regulation and Genetics, The Rockefeller University, New York, New York 10065, USA.
Laboratory of Metabolic Regulation and Genetics, The Rockefeller University, New York, New York 10065, USA
Cold Spring Harb Perspect Med. 2024 Dec 2;14(12):a041534. doi: 10.1101/cshperspect.a041534.
Mitochondria are semiautonomous organelles with diverse metabolic and cellular functions including anabolism and energy production through oxidative phosphorylation. Following the pioneering observations of Otto Warburg nearly a century ago, an immense body of work has examined the role of mitochondria in cancer pathogenesis and progression. Here, we summarize the current state of the field, which has coalesced around the position that functional mitochondria are required for cancer cell proliferation. In this review, we discuss how mitochondria influence tumorigenesis by impacting anabolism, intracellular signaling, and the tumor microenvironment. Consistent with their critical functions in tumor formation, mitochondria have become an attractive target for cancer therapy. We provide a comprehensive update on the numerous therapeutic modalities targeting the mitochondria of cancer cells making their way through clinical trials.
线粒体是具有多种代谢和细胞功能的半自主细胞器,包括通过氧化磷酸化进行合成代谢和能量产生。近一个世纪前奥托·瓦尔堡(Otto Warburg)做出开创性观察之后,大量研究工作探讨了线粒体在癌症发病机制和进展中的作用。在此,我们总结该领域的当前状况,目前已形成的共识是癌细胞增殖需要功能性线粒体。在本综述中,我们讨论线粒体如何通过影响合成代谢、细胞内信号传导和肿瘤微环境来影响肿瘤发生。鉴于线粒体在肿瘤形成中的关键作用,它们已成为癌症治疗的一个有吸引力的靶点。我们全面更新了众多针对癌细胞线粒体且正在进行临床试验的治疗方法。
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