The mitochondrial inhibitor IF1 binds to the ATP synthase OSCP subunit and protects cancer cells from apoptosis

被引:0
作者
Chiara Galber
Simone Fabbian
Cristina Gatto
Martina Grandi
Stefania Carissimi
Manuel Jesus Acosta
Gianluca Sgarbi
Natascia Tiso
Francesco Argenton
Giancarlo Solaini
Alessandra Baracca
Massimo Bellanda
Valentina Giorgio
机构
[1] University of Bologna,Department of Biomedical and Neuromotor Sciences
[2] Consiglio Nazionale delle Ricerche Institute of Neuroscience,Department of Chemical Science
[3] University of Padova,Department of Biology
[4] University of Padova,undefined
[5] Consiglio Nazionale delle Ricerche Institute of Biomolecular Chemistry,undefined
来源
Cell Death & Disease | / 14卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
The mitochondrial protein IF1 binds to the catalytic domain of the ATP synthase and inhibits ATP hydrolysis in ischemic tissues. Moreover, IF1 is overexpressed in many tumors and has been shown to act as a pro-oncogenic protein, although its mechanism of action is still debated. Here, we show that ATP5IF1 gene disruption in HeLa cells decreases colony formation in soft agar and tumor mass development in xenografts, underlining the role of IF1 in cancer. Notably, the lack of IF1 does not affect proliferation or oligomycin-sensitive mitochondrial respiration, but it sensitizes the cells to the opening of the permeability transition pore (PTP). Immunoprecipitation and proximity ligation analysis show that IF1 binds to the ATP synthase OSCP subunit in HeLa cells under oxidative phosphorylation conditions. The IF1–OSCP interaction is confirmed by NMR spectroscopy analysis of the recombinant soluble proteins. Overall, our results suggest that the IF1-OSCP interaction protects cancer cells from PTP-dependent apoptosis under normoxic conditions.
引用
收藏
相关论文
共 351 条
[51]  
Sánchez-Aragó M(2011)Structure of the F1-binding domain of the stator of bovine F1Fo-ATPase and how it binds an α-subunit Cancer Res 71 85-96
[52]  
Formentini L(2010)BCYRN1, a c-MYC-activated long non-coding RNA, regulates cell metastasis of non-small-cell lung cancer Biopolymers 93 90-7
[53]  
Martínez-Reyes I(2015)Differential expression of genes that encode glycolysis enzymes in kidney and lung cancer in humans Biomed Pharmacother 70 18781-61
[54]  
García-Bermudez J(2012)ΔNp63α confers tumor cell resistance to cisplatin through the AKT1 transcriptional regulation J Biol Chem 287 148-203
[55]  
Santacatterina F(2015)NMR studies of an immunomodulatory benzodiazepine binding to its molecular target on the mitochondrial F1F0-ATPase World J Biol Chem 6 198-9
[56]  
Sánchez-Cenizo L(2017)ATPase inhibitory factor 1 is a prognostic marker and contributes to proliferation and invasion of human gastric cancer cells Semin Oncol 44 1182-21.
[57]  
Gatto C(2015)Assessing actual contribution of IF1, inhibitor of mitochondrial F oF1, to ATP homeostasis, cell growth, mitochondrial morphology, and cell viability FEBS J 282 1-59
[58]  
Grandi M(2019)Metabolic interplay between glycolysis and mitochondrial oxidation: the reverse Warburg effect and its therapeutic implication EMBO J 38 50-63
[59]  
Solaini G(2018)Metabolic coupling and the Reverse Warburg Effect in cancer: implications for novel biomarker and anticancer agent development Anal Biochem 552 148091-89
[60]  
Baracca A(2020)Functional roles of transiently and intrinsically disordered regions within proteins Biochim Biophys Acta - Bioenerg 1861 56-62