Abstract

Mitochondria are highly dynamic organelles, and mitochondrial fission is a crucial step of apoptosis. Although Oma1 is believed to be responsible for long form Opa1 (L-Opa1) processing during mitochondrial fragmentation, whether and how Oma1 is involved in L-Opa1 processing and participates in the regulation of chemoresistance is unknown. Chemosensitive and chemoresistant ovarian (OVCA) and cervical (CECA) cancer cells were treated with cisplatin (CDDP). Mitochondrial dynamics and protein contents were assessed by immunofluorescence and Western blot, respectively. The requirements of Oma1 and p53 for CDDP-induced L-Opa1 processing, mitochondrial fragmentation, and apoptosis were examined by siRNA or cDNA. CDDP induces L-Opa1 processing and mitochondrial fragmentation in chemosensitive but not in chemoresistant cells. CDDP induced Oma1 40-kDa form increases in OV2008 cells, not in C13* cells. Oma1 knockdown inhibited L-Opa1 processing, mitochondrial fragmentation, and apoptosis. Silencing p53 expression attenuated the effects of CDDP in Oma1 (40 kDa) increase, L-Opa1 processing, mitochondrial fragmentation, and apoptosis in chemosensitive OVCA cells, whereas reconstitution of p53 in p53 mutant or null chemoresistant OVCA cells induced Oma1 (40 kDa) increase, L-Opa1 processing, mitochondrial fragmentation, and apoptosis irrespective of the presence of CDDP. Prohibitin 1 (Phb1) dissociates from Opa1-Phb1 complex and binds phosphorylated p53 (serine 15) in response to CDDP in chemosensitive but not chemoresistant CECA cells. These findings demonstrate that (a) p53 and Oma1 mediate L-Opa1 processing, (b) mitochondrial fragmentation is involved in CDDP-induced apoptosis in OVCA and CECA cells, and (c) dysregulated mitochondrial dynamics may in part be involved in the pathophysiology of CDDP resistance.

Highlights

  • Mitochondrial dynamics is involved in the regulation of apoptosis

  • Prohibitin 1 (Phb1) dissociates from Opa1-Phb1 complex and binds phosphorylated p53 in response to CDDP in chemosensitive but not chemoresistant CECA cells. These findings demonstrate that (a) p53 and Oma1 mediate long form Opa1 (L-Opa1) processing, (b) mitochondrial fragmentation is involved in CDDP-induced apoptosis in OVCA and CECA cells, and (c) dysregulated mitochondrial dynamics may in part be involved in the pathophysiology of CDDP resistance

  • To determine whether changes in mitochondrial dynamics play a role in the regulation of chemosensitivity in CECA cells, OV2008 and C13* cells were cultured in the absence and presence of CDDP (10 ␮M, 0 – 6 h), and mitochondrial phenotype was examined by immunofluorescence confocal microscopy

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Summary

Introduction

Mitochondrial dynamics is involved in the regulation of apoptosis. Results: p53 regulates mitochondrial dynamics by interacting with Prohibitin 1 and subsequent releasing Opa for Oma1mediated processing, thereby promoting apoptosis and chemoresponsiveness. Conclusion: CDDP resistance is in part due to dysregulation of p53-induced, Oma1-mediated L-Opa processing and mitochondrial fragmentation. Oma is believed to be responsible for long form Opa (L-Opa1) processing during mitochondrial fragmentation, whether and how Oma is involved in L-Opa processing and participates in the regulation of chemoresistance is unknown. The requirements of Oma and p53 for CDDP-induced L-Opa processing, mitochondrial fragmentation, and apoptosis were examined by siRNA or cDNA. CDDP induces L-Opa processing and mitochondrial fragmentation in chemosensitive but not in chemoresistant cells. Oma knockdown inhibited L-Opa processing, mitochondrial fragmentation, and apoptosis. Silencing p53 expression attenuated the effects of CDDP in Oma (40 kDa) increase, L-Opa processing, mitochondrial fragmentation, and apoptosis in chemosensitive OVCA cells, whereas reconstitution of p53 in p53 mutant or null chemoresistant OVCA cells induced Oma (40 kDa) increase, L-Opa processing, mitochondrial fragmentation, and apoptosis irrespective of the pres-

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