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B7-H4下调通过cAMP/CREB/PGC1-α信号通路诱导HeLa细胞线粒体功能障碍并增强阿霉素敏感性。

B7-H4 downregulation induces mitochondrial dysfunction and enhances doxorubicin sensitivity via the cAMP/CREB/PGC1-α signaling pathway in HeLa cells.

作者信息

Kim Hyoung Kyu, Song In-Sung, Lee Sun Young, Jeong Seung Hun, Lee Sung Ryul, Heo Hye Jin, Thu Vu Thi, Kim Nari, Ko Kyung Soo, Rhee Byoung Doo, Jeong Dae Hun, Kim Young Nam, Han Jin

出版信息

Pflugers Arch. 2014 Dec;466(12):2323-38. doi: 10.1007/s00424-014-1493-3.

Abstract

B7-H4 is a B7 family coregulatory protein that inhibits T cell-mediated immunity. B7-H4 is overexpressed in various cancers; however, the functional role of B7-H4 in cancer metabolism is poorly understood. Because mitochondria play pivotal roles in development, proliferation, and death of cancer cells, we investigated molecular and functional alterations of mitochondria in B7-H4-depleted HeLa cells. In a human study, overexpression of B7-H4 was confirmed in the cervices of adenocarcinoma patients (n = 3) compared to noncancer patients (n = 3). In the cell line model, B7-H4 depletion was performed by transfection with small interfering RNA (siRNA). B7-H4 depletion suppressed oxygen consumption rate, ATP production, and mitochondrial membrane potential and mass and increased reactive oxygen species production. In particular, electron transport complex III activity was significantly impaired in siB7-H4-treated cells. Coincidently, depletion of B7-H4 suppressed major mitochondrial regulators (peroxisome proliferator-activated receptor gamma coactivator 1-alpha [PGC1-α] and mitochondrial transcription factor A), a component of oxidative phosphorylation (ubiquinol-cytochrome c reductase core protein 1), and an antiapoptosis protein (Bcl-XL). Mitochondrial dysfunction in siRNA-treated cells significantly augmented oxidative stress, which strongly activated the JNK/P38/caspase axis in the presence of doxorubicin, resulting in increased apoptotic cell death. Investigating the mechanism of B7-H4-mediated mitochondrial modulation, we found that B7-H4 depletion significantly downregulated the cAMP/cAMP response element-binding protein/PGC1-α signaling pathway. Based on these findings, we conclude that B7-H4 has a role in the regulation of mitochondrial function, which is closely related to cancer cell physiology and drug sensitivity.

摘要

B7-H4是一种B7家族共调节蛋白,可抑制T细胞介导的免疫反应。B7-H4在多种癌症中过表达;然而,人们对B7-H4在癌症代谢中的功能作用了解甚少。由于线粒体在癌细胞的发育、增殖和死亡中起关键作用,我们研究了B7-H4缺失的HeLa细胞中线粒体的分子和功能改变。在一项人体研究中,与非癌症患者(n = 3)相比,腺癌患者(n = 3)的宫颈中证实了B7-H4的过表达。在细胞系模型中,通过转染小干扰RNA(siRNA)来实现B7-H4的缺失。B7-H4的缺失抑制了氧消耗率、ATP生成、线粒体膜电位和质量,并增加了活性氧的产生。特别是,在经siB7-H4处理的细胞中,电子传递复合体III的活性显著受损。巧合的是,B7-H4的缺失抑制了主要的线粒体调节因子(过氧化物酶体增殖物激活受体γ共激活因子1-α [PGC1-α] 和线粒体转录因子A)、氧化磷酸化的一个组分(泛醌-细胞色素c还原酶核心蛋白1)以及一种抗凋亡蛋白(Bcl-XL)。siRNA处理细胞中的线粒体功能障碍显著加剧了氧化应激,在存在阿霉素的情况下强烈激活了JNK/P38/半胱天冬酶轴,导致凋亡细胞死亡增加。在研究B7-H4介导的线粒体调节机制时,我们发现B7-H4的缺失显著下调了cAMP/环磷酸腺苷反应元件结合蛋白/PGC1-α信号通路。基于这些发现,我们得出结论,B7-H4在调节线粒体功能中起作用,这与癌细胞生理学和药物敏感性密切相关。

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