Journal of International Oncology››2019,Vol. 46››Issue (12): 711-717.doi:10.3760/cma.j.issn.1673-422X.2019.12.002

• Original Articles •Previous ArticlesNext Articles

Mitochondrial energy metabolism mediatedviaHIF-1 involves the proliferation and apoptosis of renal clear cell carcinoma cells regulated by propofol

Li Zhengmin1Zhang Yuming2Zhang Zhen1Zhang Ru1Zhu Jing2Wang Jun3

  1. 1Department of Anesthesiology, Tangdu Hospital, Air Force Medical University, Xi′an 710038, China;2Department of Anesthesiology, Shaanxi Provincial People′s Hospital, Xi′ an 710068, China;3Department of Anesthesiology, Shaanxi Tumor Hospital, Xi′an 710061, China
  • Received:2019-09-29Revised:2019-11-12Online:2019-12-08Published:2019-12-09
  • Contact:Wang Jun E-mail:wangjun0519@126.com
  • Supported by:

    Natural Science Basic Research Program of Shaanxi (2018JM7047035, 2018JM7121);

    Incubation Fund of Shaanxi Provincial People′s Hospital (2018YXQ-07)

Abstract:ObjectiveTo investigate the role of mitochondrial energy metabolism mediatedviahypoxia-inducible factor-1 (HIF-1) in the proliferation and apoptosis of renal clear cell carcinoma cells regulated by propofol.MethodsWe chose human renal clear cell carcinoma cell line RCC4 as the research object, which did not express VHL gene. The pcDNA3VHL plasmid and the pcDNA3 empty plasmid were respectively transfected into RCC4 cells to obtain RCC4-VHL(+) cells stably expressing the exogenous VHL protein and RCC4-VHL(-) cells without expressing the VHL protein. These two kinds of cells were then exposed to propofol at dosage of 0, 25, 50 and 100 μmol/L. HIF-1 protein expression was detected by Western blotting in the two kinds of cells, cell proliferation activity and apoptosis rate were detected by flow cytometry, and mitochondrial energy metabolism was detected by energy metabolism analyzer.ResultsCompared with RCC4-VHL(-) cells, the relative expression of HIF-1α protein in RCC4-VHL(+) cells was significantly decreased (0.05±0.02vs.1.23±0.10,t=16.016,P<0.001). When propofol concentrations were 50 μmol/L and 100 μmol/L, the proliferation activity of RCC4-VHL(+) cells was significantly lower than that of RCC4-VHL(-) cells (50 μmol/L: 0.10±0.02vs.0.13±0.04,t=3.502,P=0.032; 100 μmol/L: 0.05±0.02vs.0.10±0.01,t=6.771,P=0.017), and the apoptotic rate was significantly higher than that of RCC4-VHL (-) cells [50 μmol/L: (35.50±1.84)%vs.(22.15±1.06)%,t=7.082,P=0.004; 100 μmol/L: (54.35±2.97)%vs.(35.10±3.25)%,t=10.241,P<0.001). Compared with 0 μmol/L propofol, 100 μmol/L propofol increased HIF-1α protein expression in RCC4-VHL (+) cells (0.93±0.05vs.0.04±0.02,t=18.500,P<0.001). Compared with RCC4-VHL(-) cells, the oxygen consumption rate (OCR) [(130.42±11.81) pmol/min vs. (48.27±7.66) pmol/min,t=11.672,P<0.001], basal aerobic respiration [(98.55±8.09) pmol/minvs.(41.63±6.21) pmol/min,t=11.162,P<0.001], aerobic maximum [(226.79±13.51) pmol/minvs.(70.18±6.82) pmol/min,t=20.697,P<0.001], non-mitochondrial respiration [(28.36±4.29) pmol/minvs.(8.92±1.70) pmol/min,t=8.426,P=0.001] and oxygen consumption rate of proton leak [(23.85±5.08) pmol/minvs.(7.80±1.24) pmol/min,t=6.139,P=0.006] were significantly increased in RCC4-VHL(+) cells, while the extracellular acidification rate (ECAR) was significantly decreased [(26.76±4.35) mpH/minvs.(39.48±5.17) mpH/min,t=3.765,P=0.010]. Compared with 0 μmol/L propofol added in RCC4-VHL(+) cells, 100 μmol/L propofol decreased OCR [(72.44±8.15) pmol/minvs.(131.56±9.04) pmol/min,t=9.751, P<0.001], basal aerobic respiration [(54.31±5.35) pmol/minvs.(96.49±6.86) pmol/min,t=9.697,P<0.001], aerobic maximum [(116.71±12.39) pmol/minvs.(219.53±11.80) pmol/min,t=12.019,P<0.001], non-mitochondrial respiration [(13.25±4.01) pmol/minvs.(29.04±5.11) pmol/min,t=4.862,P=0.002] and oxygen consumption rate of proton leak [(10.24±3.79) pmol/minvs.(22.92±4.12) pmol/min,t=4.530,P=0.003], and increased ECAR significantly [(37.69±3.75) mpH/minvs.(25.87±4.03) mpH/min,t=4.294,P=0.004].ConclusionLoss of VHL up-regulates expression of HIF-1 protein, and mitochondrial energy metabolism mediatedviaHIF-1 involves the proliferation and apoptosis of RCC4 cells regulated by propofol.

Key words:Hypoxia-inducible factor 1,Energy metabolism,Propofol,Cell proliferation,Renal clear cell carcinoma