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多组学分析揭示ClpP激活剂破坏三阴性乳腺癌中的关键线粒体途径。

Multi-omics analyses reveal ClpP activators disrupt essential mitochondrial pathways in triple-negative breast cancer.

作者信息

Fennell Emily M J, Aponte-Collazo Lucas J, Pathmasiri Wimal, Rushing Blake R, Barker Natalie K, Partridge Megan C, Li Yuan-Yuan, White Cody A, Greer Yoshimi E, Herring Laura E, Lipkowitz Stanley, Sumner Susan C J, Iwanowicz Edwin J, Graves Lee M

机构信息

Department of Pharmacology and Lineberger Comprehensive Cancer Center, University of North Carolina at Chapel Hill, Chapel Hill, NC, United States.

Department of Nutrition, Nutrition Research Institute, University of North Carolina at Chapel Hill, Kannapolis, NC, United States.

出版信息

Front Pharmacol. 2023 Mar 31;14:1136317. doi: 10.3389/fphar.2023.1136317. eCollection 2023.

Abstract

ClpP activators ONC201 and related small molecules (TR compounds, Madera Therapeutics), have demonstrated significant anti-cancer potential in and studies, including clinical trials for refractory solid tumors. Though progress has been made in identifying specific phenotypic outcomes following ClpP activation, the exact mechanism by which ClpP activation leads to broad anti-cancer activity has yet to be fully elucidated. In this study, we utilized a multi-omics approach to identify the ClpP-dependent proteomic, transcriptomic, and metabolomic changes resulting from ONC201 or the TR compound TR-57 in triple-negative breast cancer cells. Applying mass spectrometry-based methods of proteomics and metabolomics, we identified ∼8,000 proteins and 588 metabolites, respectively. From proteomics data, 113 (ONC201) and 191 (TR-57) proteins significantly increased and 572 (ONC201) and 686 (TR-57) proteins significantly decreased in this study. Gene ontological (GO) analysis revealed strong similarities between proteins up- or downregulated by ONC201 or TR-57 treatment. Notably, this included the downregulation of many mitochondrial processes and proteins, including mitochondrial translation and mitochondrial matrix proteins. We performed a large-scale transcriptomic analysis of WT SUM159 cells, identifying ∼7,700 transcripts (746 and 1,100 significantly increasing, 795 and 1,013 significantly decreasing in ONC201 and TR-57 treated cells, respectively). Less than 21% of these genes were affected by these compounds in ClpP null cells. GO analysis of these data demonstrated additional similarity of response to ONC201 and TR-57, including a decrease in transcripts related to the mitochondrial inner membrane and matrix, cell cycle, and nucleus, and increases in other nuclear transcripts and transcripts related to metal-ion binding. Comparison of response between both compounds demonstrated a highly similar response in all -omics datasets. Analysis of metabolites also revealed significant similarities between ONC201 and TR-57 with increases in α-ketoglutarate and 2-hydroxyglutaric acid and decreased ureidosuccinic acid, L-ascorbic acid, L-serine, and cytidine observed following ClpP activation in TNBC cells. Further analysis identified multiple pathways that were specifically impacted by ClpP activation, including ATF4 activation, heme biosynthesis, and the citrulline/urea cycle. In summary the results of our studies demonstrate that ONC201 and TR-57 induce highly similar and broad effects against multiple mitochondrial processes required for cell proliferation.

摘要

ClpP激活剂ONC201及相关小分子(TR化合物,马德拉治疗公司)在临床前和临床研究中已显示出显著的抗癌潜力,包括针对难治性实体瘤的临床试验。尽管在确定ClpP激活后的特定表型结果方面已取得进展,但ClpP激活导致广泛抗癌活性的确切机制尚未完全阐明。在本研究中,我们采用多组学方法来确定三阴性乳腺癌细胞中由ONC201或TR化合物TR-57引起的ClpP依赖性蛋白质组、转录组和代谢组变化。应用基于质谱的蛋白质组学和代谢组学方法,我们分别鉴定出约8000种蛋白质和588种代谢物。从蛋白质组学数据来看,在本研究中,113种(ONC201)和191种(TR-57)蛋白质显著增加,572种(ONC201)和686种(TR-57)蛋白质显著减少。基因本体(GO)分析显示,经ONC201或TR-57处理后上调或下调的蛋白质之间有很强的相似性。值得注意的是,这包括许多线粒体过程和蛋白质的下调,包括线粒体翻译和线粒体基质蛋白。我们对野生型SUM159细胞进行了大规模转录组分析,鉴定出约7700个转录本(在经ONC201和TR-57处理的细胞中,分别有746个和1100个显著增加,795个和1013个显著减少)。在ClpP缺失的细胞中,这些基因中受这些化合物影响的不到21%。对这些数据的GO分析表明,对ONC201和TR-57的反应还有其他相似之处,包括与线粒体内膜和基质、细胞周期及细胞核相关的转录本减少,以及其他核转录本和与金属离子结合相关的转录本增加。两种化合物之间反应的比较表明,在所有组学数据集中反应高度相似。代谢物分析还揭示了ONC201和TR-57之间的显著相似性,在三阴性乳腺癌细胞中ClpP激活后,观察到α-酮戊二酸和2-羟基戊二酸增加,而脲基琥珀酸、L-抗坏血酸、L-丝氨酸和胞苷减少。进一步分析确定了多个受ClpP激活特异性影响的途径,包括ATF4激活、血红素生物合成和瓜氨酸/尿素循环。总之,我们的研究结果表明,ONC201和TR-57对细胞增殖所需的多个线粒体过程诱导了高度相似且广泛的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c98/10103842/f5d4619e3bab/fphar-14-1136317-g001.jpg

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