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缺氧诱导的 DNM1L 线粒体易位增加了 HCC 细胞中线粒体的分裂,并通过激活 HK2 触发了 mPTP 的开放。

Hypoxia‑induced mitochondrial translocation of DNM1L increases mitochondrial fission and triggers mPTP opening in HCC cells via activation of HK2.

机构信息

Department of Nephrology, Yongchuan Hospital of Chongqing Medical University, Chongqing 402160, P.R. China.

Department of Gastroenterology, Yongchuan Hospital of Chongqing Medical University, Chongqing 402160, P.R. China.

出版信息

Oncol Rep. 2019 Sep;42(3):1125-1132. doi: 10.3892/or.2019.7213. Epub 2019 Jun 27.

Abstract

Disturbed mitochondrial dynamics are closely associated with the progression of different types of cancer including hepatocellular carcinoma (HCC). However, the manner in which mitochondrial dynamics are regulated in HCC remains largely unclear. In the present study, via immunofluorescence, real‑time PCR and western blot analysis, the effects of dynamin‑1‑like (DNM1L) on mitochondrial translocation and the mitochondrial permeability transition pore (mPTP) were investigated in HCC cells under hypoxic conditions, and the underlying molecular mechanisms were explored. Our data revealed that hypoxic treatment decreased the mitochondrial membrane potential, elevated generation of reactive oxygen species, and promoted mitochondrial fission in a DNM1L‑dependent manner. Instead of changing the levels of DNMlL, hypoxia increased the translocation of DNM1L to mitochondria, leading to excessive mitochondrial fission and decreased the viability of HCC cells. In addition to the effects on mitochondrial dynamics, DNM1L also regulated mPTP opening in HCC. IP analysis revealed that DNM1L interacted with the enzyme hexokinase 2 (HK2), and was involved in its phosphorylation, resulting in HK2 detachment from the mitochondria and consequently mPTP opening.

摘要

线粒体动力学的紊乱与包括肝细胞癌(HCC)在内的不同类型癌症的进展密切相关。然而,线粒体动力学在 HCC 中的调节方式在很大程度上仍不清楚。在本研究中,通过免疫荧光、实时 PCR 和 Western blot 分析,研究了在缺氧条件下 DNM1L(dynamin-1-like)对 HCC 细胞中线粒体易位和线粒体通透性转换孔(mPTP)的影响,并探讨了潜在的分子机制。我们的数据显示,缺氧处理以 DNM1L 依赖性方式降低了线粒体膜电位,增加了活性氧的产生,并促进了线粒体分裂。缺氧不是改变 DNM1L 的水平,而是增加了 DNM1L 向线粒体的易位,导致过度的线粒体分裂和 HCC 细胞活力降低。除了对线粒体动力学的影响外,DNM1L 还调节 HCC 中的 mPTP 开放。IP 分析显示 DNM1L 与酶己糖激酶 2(hexokinase 2,HK2)相互作用,并参与其磷酸化,导致 HK2 从线粒体上脱离,进而 mPTP 开放。

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