参考文献/References:
[1] CORRADO C, FONTANA S. Hypoxia and HIF signaling: one axis with divergent effects[J]. International Journal of Molecular Sciences, 2020, 21(16): 5611.
[2] LORENZO G, DOUGLAS G. Autophagy-independent functions of the autophagy machinery[J]. Cell, 2019, 177(7) : 1682-1699.
[3] KUPPUSAMT B. HIF-1 at the crossroads of hypoxia, inflammation, and cancer.[J]. International Journal of Cancer, 2016, 138(5): 1058-1066.
[4] WANG G L, SEMENZA G L. Purification and characterization of hypoxia-inducible factor 1[J]. The Journal of biological chemistry, 1995, 270(3): 1230-1237.?/div>
[5] 范贤敏,罗永杰. 脑出血后缺氧诱导因子-1α及热休克蛋白70作用机制的研究[J]. 实用医院临床杂志,2015,12(3): 187-189.
[6] KONDO K, WILLIAM G K. The von hippel-lindau tumor suppressor gene[J]. Experimental Cell Research, 2001, 264(1): 117-125.
[7] URBAN L, LEE K L, YANG H, et al. Generating specificity and diversity in the transcriptional response to hypoxia[J]. Nature Reviews, 2009, 10(12) : 821-832.
[8] SAMANTA D, GREGG L S. Metabolic adaptation of cancer and immune cells mediated by hypoxia-inducible factors[J]. Reviews on Cancer, 2018, 1870(1): 15-22.?/div>
[9] VAN SJIKE C E, LIN A L, RAQUEL R B, et al. mTOR drives cerebrovascular, synaptic, and cognitive dysfunction in normative aging.[J]. Aging Cell, 2020, 19(1) : e13057.
[10] KOBAYASHI Y, OGURO A, IMAOKA S. Bisphenol A and its derivatives induce degradation of HIF-1alpha via the lysosomal pathway in human hepatocarcinoma cell line, Hep3B[J]. Biological and Pharmaceutical Bulletin, 2018, 41(3): 374-382.
[11] JIN Q, ZHENG J S, CHEN M, et al. HIF-1 inhibitor YC-1 reverses the acquired resistance of EGFR-mutant HCC827 cell line with MET amplification to gefitinib[J]. Oxidative Medicine and Cellular Longevity, 2021, 2021: 6633867.
[12] PINTO M P, MEDINA R A, OWEN G I. 2-methoxyestradiol and disorders of female reproductive tissues[J]. Hormones and Cancer, 2014, 5(5): 274-283.
[13] GUNTER B. Christian de Duve (1917-2013)[J]. Nature, 2013, 498(7454): 300.
[14] NIETO-TORRES J, HANSEN M. Macroautophagy and aging: The impact of cellular recycling on health and longevity[J]. Molecular Aspects of Medicine, 2021, 82: 101020.
[15] SUSMITA K, MARIA C A. The coming of age of chaperone-mediated autophagy[J]. Nature Reviews, 2018, 19(6): 365-381.
[16] ROBERT G, JACQUEL A, AUBERGER P. Chaperone-mediated autophagy and its emerging role in hematological malignancies[J]. Cells, 2019, 8(10): 1260.
[17] FERNANDEZ á F, SEBITI S, WEI Y J, et al. Disruption of the beclin 1-BCL2 autophagy regulatory complex promotes longevity in mice[J]. Nature, 2018, 558(7708): 136-140.
[18] GUNTER J, RUIZ-SERRANO A, PICKEL C, et al. The functional interplay between the HIF pathway and the ubiquitin system – more than a one-way road[J]. Experimental Cell Research, 2017, 356(2): 152-159.?/div>
[19] GREENE C J, SHARMA N J, FIORICAL P N, et al. Suppressive effects of iron chelation in clear cell renal cell carcinoma and their dependency on VHL inactivation[J]. Free Radical Biology and Medicine, 2018, 133: 295-309.
[20] HEIMO M. Neocytolysis: How to get rid of the extra erythrocytes formed by stress erythropoiesis upon descent from high altitude[J]. Frontiers in Physiology, 2018, 9: 345.
[21] 邱振方,李世英. X染色体连锁的凋亡抑制蛋白及BNIP3在脑缺血再灌注损伤中作用的研究进展[J]. 广东医学,2015,36(22): 3555-3558.
[22] NAGAO A, KOBAYASHI M, KOYSU S, et al. HIF-1-dependent reprogramming of glucose metabolic pathway of cancer cells and its therapeutic significance[J]. International Journal of Molecular Sciences, 2019, 20(2): 238.
[23] KRISTIN T, DIBLING B C, SPIKE B T, et al. BNIP3 is an RB/E2F target gene required for hypoxia-induced autophagy[J]. Molecular and Cellular Biology, 2007, 27(17): 6229-6242.
[24] VITTORIA I, ANNA S, PAOLO C, et al. Cancer cell metabolism in hypoxia: Role of HIF-1 as key regulator and therapeutic target[J]. International Journal of Molecular Sciences, 2021, 22(11): 5703.
[25] DIBBLE C C, CANTLEY L C. Regulation of mTORC1 by PI3K signaling[J]. Trends in Cell Biology, 2015, 25(9): 545-555.
[26] HWANG S K, KIM H H. The functions of mTOR in ischemic diseases.[J]. BMB Reports, 2011, 44(8): 506-511.
[27] ZUKAA A T, ANDREAS P, FRANKLIN C T, et al. Differential transcriptional regulation of hypoxia-inducible factor-1α by arsenite under normoxia and hypoxia: involvement of Nrf2[J]. Journal of Molecular Medicine , 2016, 94(10): 1153-1166.、
[28] 邹春阳,陈晨,王凤秋,等. 基于PI3K/Akt/mTOR信号通路的自噬调节剂研究进展[J]. 中国药物化学杂志,2021,31(10): 825-833.?/div>
[29] ZHOU B, RONG T. Mitochondrial dysfunction in pathophysiology of heart failure[J]. Journal of Clinical Investigation, 2018, 128(9): 3716-3726.
[30] TOEEEGROSSA F, AGUENNOUZ M, TORRE D L, et al. Role of erythropoietin in cerebral glioma: An innovative target in neuro-oncology[J]. World Neurosurgery, 2019, 131(C): 346-355.
[31] WU L P, CHEN Y F, CHEN Y Y, et al. Effect of HIF-1α/miR-10b-5p/PTEN on hypoxia-induced cardiomyocyte apoptosis[J]. Journal of the American Heart Association, 2019, 8(18): e011948.
[32] DU Y Q, GE Y B, XU Z H, et al. Hypoxia-inducible factor 1 alpha (HIF-1α)/vascular endothelial growth factor (VEGF) pathway participates in angiogenesis of myocardial infarction in muscone-treated mice: Preliminary study[J]. International Medical Journal of Experimental and Clinical Research, 2018, 24: 8870-8877.
[33] SU H H, LIAO J M, WANG Y H, et al. Exogenous GDF11 attenuates non-canonical TGF-β signaling to protect the heart from acute myocardial ischemia-reperfusion injury[J]. Basic Research in Cardiology, 2019, 114(3): 20.
[34] CADENAS S. ROS and redox signaling in myocardial ischemia-reperfusion injury and cardioprotection[J]. Free Radical Biology and Medicine, 2018, 117: 76-89.
[35] DING C B, YU W N, FENG J H, et al. Structure and function of Gab2 and its role in cancer[J]. Molecular Medicine Reports, 2015, 12(3): 4007-4014.
[36] SONG W X, LI D Y, TAO L, et al. Solute carrier transporters: The metabolic gatekeepers of immune cells[J]. Acta Pharmaceutica Sinica B, 2020, 10(1): 61-78.
[37] XU K, ZHAN Y P, UAN Z T, et al. Hypoxia induces drug resistance in colorectal cancer through the HIF-1α/miR-338-5p/IL-6 Feedback Loop[J]. Molecular Therapy, 2019, 27(10): 1810-1824.?/div>