Selective ATP hydrolysis inhibition in F1Fo ATP synthase enhances radiosensitivity in non-small-cell lung cancer cells (A549)
Zhang, Hong1,2,6,7; Wang, Yupei1,2,5,6; Hou, Qinzheng4; Xiao, Guoqing2; Yang, Shifeng3; Di, Cuixia1,2,6; Si, Jing1,2,6; Zhou, Rong1,2,6; Ye, Yancheng7; Zhang, Yanshan7
刊名ONCOTARGET
2017-08-08
卷号8页码:53602-53612
关键词F1fo-atp Synthase X-ray Radiation Radiosensitivity Mitochondrial Membrane Potential
ISSN号1949-2553
DOI10.18632/oncotarget.18657
英文摘要

Background: F1Fo-ATP synthase (F1Fo-ATPase) is a reversibly rotary molecular machine whose dual functions of synthesizing or hydrolyzing ATP switch upon the condition of cell physiology. The robust ATP-hydrolyzing activity occurs in ischemia for maintaining the transmembrane proton motive force of mitochondria inner membrane, but the effect of F1Fo-ATPase on X-ray response of non-small-cell lung cancer (NSCLC) cells is unknown. Methods and Findings: We studied whether ATP hydrolysis affected X-ray radiation induced cell death. NSCLC cells (A549) were pretreated with BTB06584 (BTB), an elective ATP hydrolysis inhibitor, followed by X-ray radiation. Cell viability and clonogenic survival were markedly decreased, clear indications of enhanced radiosensitivity through BTB incubation. Additionally, ATP5a1 was upregulated in parallel with elevated ATP hydrolytic activity after X-ray radiation, showing an increased mitochondrial membrane potential (Delta psi(m)). ATP hydrolysis inhibition led to collapse of Delta psi(m) suggesting ATP hydrolytic activity could enhance Delta psi(m) after X-ray radiation. Furthermore, we also demonstrated that apoptosis was pronounced with the prolonged collapse of Delta psi(m) due to hydrolysis inhibition by BTB incubation. Conclusion: Overall, these findings supported that ATP hydrolysis inhibition could enhance the radiosensitivity in NSCLC cells (A549) after X-ray radiation, which was due to the collapse of Delta psi(m).

资助项目Key Program of National Natural Science Foundation of China[U1432248] ; Key Program of National Natural Science Foundation of China[U1632270] ; Ministry of science and technology national key R D project[2016YFC0904600] ; National Natural Science Foundation of China[11405230] ; National Natural Science Foundation of China[31360044] ; National Natural Science Foundation of China[10835011] ; National Natural Science Foundation of China[11205219]
WOS关键词Reactive Oxygen ; Ionizing-radiation ; Mitochondrial Atp ; Glycolytic Atp ; Up-regulation ; Protein ; Mitophagy ; Apoptosis ; Death ; Metabolism
WOS研究方向Oncology ; Cell Biology
语种英语
出版者IMPACT JOURNALS LLC
WOS记录号WOS:000407124100127
资助机构Key Program of National Natural Science Foundation of China ; Ministry of science and technology national key R D project ; National Natural Science Foundation of China
内容类型期刊论文
源URL[http://119.78.100.186/handle/113462/45481]  
专题近代物理研究所_兰州重离子研究装置
作者单位1.Inst Modern Phys, CAS Key Lab Heavy Ion Radiat Biol & Med, Lanzhou 730000, Gansu, Peoples R China
2.Chinese Acad Sci, Inst Modern Phys, Lanzhou 730000, Gansu, Peoples R China
3.Lanzhou Univ, Sch Pharm, Lanzhou 730000, Gansu, Peoples R China
4.Northwest Normal Univ, Coll Life Sci, Lanzhou 730070, Gansu, Peoples R China
5.Univ Chinese Acad Sci, Beijing 100049, Peoples R China
6.Inst Modern Phys, Key Lab Heavy Ion Radiat Med Gansu Prov, Lanzhou 730000, Gansu, Peoples R China
7.Gansu Wuwei Tumor Hosp, Dept Sci & Technol, Wuwei 733000, Gansu, Peoples R China
推荐引用方式
GB/T 7714
Zhang, Hong,Wang, Yupei,Hou, Qinzheng,et al. Selective ATP hydrolysis inhibition in F1Fo ATP synthase enhances radiosensitivity in non-small-cell lung cancer cells (A549)[J]. ONCOTARGET,2017,8:53602-53612.
APA Zhang, Hong.,Wang, Yupei.,Hou, Qinzheng.,Xiao, Guoqing.,Yang, Shifeng.,...&Zhang, Yanshan.(2017).Selective ATP hydrolysis inhibition in F1Fo ATP synthase enhances radiosensitivity in non-small-cell lung cancer cells (A549).ONCOTARGET,8,53602-53612.
MLA Zhang, Hong,et al."Selective ATP hydrolysis inhibition in F1Fo ATP synthase enhances radiosensitivity in non-small-cell lung cancer cells (A549)".ONCOTARGET 8(2017):53602-53612.
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