TRAP1 modulates mitochondrial biogenesis via PGC-1α/TFAM signalling pathway in colorectal cancer cells.

IF 4.8 3区 医学 Q1 GENETICS & HEREDITY
Journal of Molecular Medicine-Jmm Pub Date : 2024-10-01 Epub Date: 2024-08-29 DOI:10.1007/s00109-024-02479-9
Giuseppina Bruno, Michele Pietrafesa, Fabiana Crispo, Annamaria Piscazzi, Francesca Maddalena, Guido Giordano, Vincenza Conteduca, Marianna Garofoli, Almudena Porras, Franca Esposito, Matteo Landriscina
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Abstract

Metabolic rewiring promotes cancer cell adaptation to a hostile microenvironment, representing a hallmark of cancer. This process involves mitochondrial function and is mechanistically linked to the balance between mitochondrial biogenesis (MB) and mitophagy. The molecular chaperone TRAP1 is overexpressed in 60-70% of human colorectal cancers (CRC) and its over-expression correlates with poor clinical outcome, being associated with many cancer cell functions (i.e. adaptation to stress, protection from apoptosis and drug resistance, protein synthesis quality control, metabolic rewiring from glycolysis to mitochondrial respiration and vice versa). Here, the potential new role of TRAP1 in regulating mitochondrial dynamics was investigated in CRC cell lines and human CRCs. Our results revealed an inverse correlation between TRAP1 and mitochondrial-encoded respiratory chain proteins both at transcriptional and translational levels. Furthermore, TRAP1 silencing is associated with increased mitochondrial mass and mitochondrial DNA copy number (mtDNA-CN) as well as enhanced MB through PGC-1α/TFAM signalling pathway, promoting the formation of new functioning mitochondria and, likely, underlying the metabolic shift towards oxidative phosphorylation. These results suggest an involvement of TRAP1 in regulating MB process in human CRC cells. KEY MESSAGES: TRAP1 inversely correlates with protein-coding mitochondrial gene expression in CRC cells and tumours. TRAP1 silencing correlates with increased mitochondrial mass and mtDNA copy number in CRC cells. TRAP1 silencing favours mitochondrial biogenesis in CRC cells.

Abstract Image

TRAP1 通过 PGC-1α/TFAM 信号通路调节结直肠癌细胞的线粒体生物生成。
代谢重新布线可促进癌细胞适应恶劣的微环境,是癌症的一大特征。这一过程涉及线粒体功能,在机理上与线粒体生物生成(MB)和有丝分裂之间的平衡有关。分子伴侣 TRAP1 在 60%-70% 的人类结直肠癌(CRC)中过度表达,其过度表达与不良临床预后相关,并与许多癌细胞功能有关(即适应应激、保护细胞免于凋亡和耐药性、蛋白质合成质量控制、从糖酵解到线粒体呼吸的代谢重构,反之亦然)。本文研究了 TRAP1 在 CRC 细胞系和人类 CRC 中调节线粒体动力学的潜在新作用。我们的研究结果表明,TRAP1 与线粒体编码的呼吸链蛋白之间在转录和翻译水平上存在反相关性。此外,TRAP1 的沉默与线粒体质量和线粒体 DNA 拷贝数(mtDNA-CN)的增加以及通过 PGC-1α/TFAM 信号通路增强 MB 有关,这促进了新功能线粒体的形成,并可能是代谢转向氧化磷酸化的基础。这些结果表明,TRAP1 参与了人类 CRC 细胞 MB 过程的调控。关键信息:TRAP1 与 CRC 细胞和肿瘤中编码蛋白质的线粒体基因表达成反比。TRAP1 沉默与 CRC 细胞中线粒体质量和 mtDNA 拷贝数的增加有关。TRAP1 沉默有利于 CRC 细胞中线粒体的生物生成。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Molecular Medicine-Jmm
Journal of Molecular Medicine-Jmm 医学-医学:研究与实验
CiteScore
9.30
自引率
0.00%
发文量
100
审稿时长
1.3 months
期刊介绍: The Journal of Molecular Medicine publishes original research articles and review articles that range from basic findings in mechanisms of disease pathogenesis to therapy. The focus includes all human diseases, including but not limited to: Aging, angiogenesis, autoimmune diseases as well as other inflammatory diseases, cancer, cardiovascular diseases, development and differentiation, endocrinology, gastrointestinal diseases and hepatology, genetics and epigenetics, hematology, hypoxia research, immunology, infectious diseases, metabolic disorders, neuroscience of diseases, -omics based disease research, regenerative medicine, and stem cell research. Studies solely based on cell lines will not be considered. Studies that are based on model organisms will be considered as long as they are directly relevant to human disease.
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