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抑素 1 通过与 p53 相互作用调节妇科癌症中线粒体动力学和化疗耐药性。

Prohibitin 1 interacts with p53 in the regulation of mitochondrial dynamics and chemoresistance in gynecologic cancers.

机构信息

Departments of Obstetrics and Gynecology and Cellular and Molecular Medicine, Interdisciplinary School of Health Sciences University of Ottawa, and Chronic Disease Program, Ottawa Hospital Research Institute, 501 Smyth Road, Mail Box #511, ON, K1H 8L6, Ottawa, Canada.

Department of Obstetrics and Gynecology and Cancer Research Institute, Seoul National University College of Medicine, Seoul, 03080, Republic of Korea.

出版信息

J Ovarian Res. 2022 Jun 7;15(1):70. doi: 10.1186/s13048-022-00999-x.

Abstract

BACKGROUND

Mitochondrial dynamics (e.g. fission/fusion) play an important role in controlling chemoresistance in representative gynecologic malignancies, ovarian and cervical cancer. Processing the long form of Optic atrophy (L-Opa)1 is a distinctive character of mitochondrial fragmentation, associated with chemosensitivity. Here, we examined the role of prohibitin (Phb)1 in increasing L-Opa1 processing via the regulating mitochondrial protease, Oma1 and its direct interaction with p-p53 (ser15) and pro-apoptotic Bcl-2 antagonist/killer (Bak) 1 in the signaling axis and if this phenomenon is associated with prognosis of patients.

METHODS

We compared Cisplatin (CDDP)-induced response of mitochondrial dynamics, molecular interaction among p-p53 (ser15)-Phb1-Bak, and chemoresponsiveness in paired chemosensitive and chemoresistant gynecologic cancer cells (ovarian and cervical cancer cell lines) using western blot, immunoprecipitation, sea horse, and immunofluorescence. Translational strategy with proximity ligation assessment in phb1-p-p53 (ser15) in human ovarian tumor sections further confirmed in vitro finding, associated with clinical outcome.

RESULTS

We report that: (1) Knock-down of Phb1 prevents Cisplatin (cis-diamine-dichloroplatinum; CDDP) -induced changes in mitochondrial fragmentation and Oma1 mediated cleavage, and Opa1 processing; (2) In response to CDDP, Phb1 facilitates the p-p53 (ser15)-Phb1-Bak interaction in mitochondria in chemosensitive gynecologic cancer cells but not in chemoresistant cells; (3) Akt overexpression results in suppressed p-p53(Ser15)-Phb1 interaction and dysregulated mitochondrial dynamics, and (4) Consistent with in vitro findings, proximity ligation assessment (PLA) in human ovarian tumor sections demonstrated that p-p53(ser15)-Phb1-Bak interaction in mitochondria is associated with better chemoresponsiveness and clinical outcome of patients. Determining the molecular mechanisms by which Phb1 facilitates mitochondrial fragmentation and interacts with p53 may advance the current understanding of chemoresistance and pathogenesis of gynecologic cancer.

CONCLUSION

Determining the key molecular mechanisms by which Phb1 facilitates the formation of p-p53 (ser15)-Bak-Phb1 and its involvement in the regulation of mitochondrial dynamics and apoptosis may ultimately contribute to the current understanding of molecular and cellular basis of chemoresistance in this gynecologic cancer.

摘要

背景

线粒体动力学(例如裂变/融合)在控制代表性妇科恶性肿瘤(卵巢癌和宫颈癌)的化疗耐药性方面发挥着重要作用。长形式视蛋白缺失(L-Opa)1 的加工是线粒体碎片化的一个显著特征,与化疗敏感性相关。在这里,我们研究了抑制素(Phb)1 通过调节线粒体蛋白酶 Oma1 及其与 p53(丝氨酸 15 位)的直接相互作用和促凋亡 Bcl-2 拮抗剂/杀伤(Bak)1 在信号轴中的作用,增加 L-Opa1 加工的作用,以及这种现象是否与患者的预后相关。

方法

我们使用 Western blot、免疫沉淀、海马和免疫荧光比较了顺铂(CDDP)诱导的线粒体动力学变化、p53(丝氨酸 15 位)-Phb1-Bak 之间的分子相互作用以及配对的化疗敏感和耐药妇科癌细胞(卵巢癌和宫颈癌细胞系)的化疗反应。通过邻近连接评估在人卵巢肿瘤切片中的 phb1-p-p53(ser15)中的翻译策略进一步证实了体外发现与临床结果相关。

结果

我们报告:(1)Phb1 敲低可防止顺铂(顺二氨二氯铂;CDDP)诱导的线粒体片段化和 Oma1 介导的裂解以及 Opa1 加工的变化;(2)在对 CDDP 的反应中,Phb1 促进化疗敏感妇科癌细胞中线粒体中 p-p53(丝氨酸 15 位)-Phb1-Bak 的相互作用,但在耐药细胞中则不然;(3)Akt 的过表达导致 p-p53(Ser15)-Phb1 相互作用受到抑制和线粒体动力学失调;(4)与体外研究结果一致,人卵巢肿瘤切片中的邻近连接评估(PLA)表明,线粒体中 p-p53(ser15)-Phb1-Bak 相互作用与患者的更好化疗反应和临床结局相关。确定 Phb1 促进线粒体片段化和与 p53 相互作用的关键分子机制,可能有助于深入了解妇科癌症的化疗耐药性和发病机制。

结论

确定 Phb1 促进 p-p53(ser15)-Bak-Phb1 形成及其在调节线粒体动力学和凋亡中的作用的关键分子机制,可能最终有助于理解这种妇科癌症中化疗耐药的分子和细胞基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5245/9172162/ce54860bc5e5/13048_2022_999_Fig1_HTML.jpg

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