4.7 Article

GRP75-faciliated Mitochondria-associated ER Membrane (MAM) Integrity controls Cisplatin-resistance in Ovarian Cancer Patients

期刊

INTERNATIONAL JOURNAL OF BIOLOGICAL SCIENCES
卷 18, 期 7, 页码 2914-2931

出版社

IVYSPRING INT PUBL
DOI: 10.7150/ijbs.71571

关键词

mitochondria-associated ER membrane; glucose-regulated protein; Ca2+ fluxes; cisplatin-resistance; ovarian cancer

资金

  1. National Natural Science Foundation of China [81373318]
  2. National Translational Science Center for Molecular Medicine Fund [F1034361]
  3. Key Research Fund of Tianjin Project Team [XB202010]
  4. Key Research and Development Program of Tianjin [20YFZCSY00450]
  5. Tianjin sci-tech commissioner Fund [21YDTPJC00220]
  6. Chinese Pharmacertical Association-Yiling Pharmacertical Innovation Fund [CPAYLJ202003]

向作者/读者索取更多资源

GRP75-faciliated MAM formation is enriched in cisplatin-resistant ovarian cancer cells. Diminishing MAM integrity by GRP75-deficiency reduces ER-to-mitochondrial Ca2+ transfer, accelerates mitochondrial dysfunction and ROS accumulation, and enhances cisplatin-triggered apoptotic cell death.
Background: Control of ER-mitochondrial Ca2+ fluxes is a critical checkpoint to determine cell fate under stress. The 75-kDa glucose-regulated protein (GRP75) is a key tether protein facilitating mitochondria-associated ER membrane (MAM) formation through the IP3R-GRP75-VDAC1 complex. Although GRP75 contributes to cisplatin (CP)-resistance of ovarian cancer (OC), the underlying mechanisms are not clear. Methods: CP-resistant and-sensitive OC cell lines with GRP75 stable modulation were established. Confocal, PLA, co-IP, and TEM analysis were utilized to detect MAM integrity. Live cell Ca2+ imaging, intracellular ATP, ROS, and NAD+ assays were utilized to investigate ER-to-mitochondrial Ca2+ transfer and mitochondrial bioenergetics. Western blot, flow cytometry, CCK-8, Delta psi m, and mPTP assays were utilized to examine apoptotic cell death. Bioinformatics, patient's specimens, and immunohistochemistry were conducted to obtain the clinical relevance for GRP75-facilitated MAM formation. Results: GRP75-faciliated MAM formation was enriched in CP-resistant OC cells. CP-exposure only increased MAM formation in CP-sensitive OC cells, and enrichment of GRP75 and VDAC1 at MAMs is indispensable to CP-resistance. Diminishing MAM integrity by GRP75-deficiency reduced ER-to mitochondria Ca2+ transfer, accelerated CP-induced mitochondrial dysfunction, provoked catastrophic ROS, and enhanced CP-triggered apoptotic cell death in OC cells. Clinical investigations confirmed the enrichment of GRP75-faciliated MAM formation in relapsed OC patients, and such enrichment was associated with the CP-resistance phenotype. Conclusion: GRP75-overexpression confers CP-resistance by distinctively managing MAM-facilitated Ca2+ fluxes and the pro-survival ROS signal, whereas GRP75-deficiency induces cell death via bioenergetic crisis and apoptotic ROS accumulation in OC cells. Our results show that GRP75-faciliated MAM formation is a potential target to overcome CP-resistance of OC.

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