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Hypoxia-Induced Modulation of Apoptosis and BCL-2 Family Proteins in Different Cancer Cell Types

机译:细胞凋亡的缺氧诱导的调制和BCL-2家族蛋白在不同的癌细胞类型

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摘要

Hypoxia plays an important role in the resistance of tumour cells to chemotherapy. However, the exact mechanisms underlying this process are not well understood. Moreover, according to the cell lines, hypoxia differently influences cell death. The study of the effects of hypoxia on the apoptosis induced by 5 chemotherapeutic drugs in 7 cancer cell types showed that hypoxia generally inhibited the drug-induced apoptosis. In most cases, the effect of hypoxia was the same for all the drugs in one cell type. The expression profile of 93 genes involved in apoptosis as well as the protein level of BCL-2 family proteins were then investigated. In HepG2 cells that are strongly protected against cell death by hypoxia, hypoxia decreased the abundance of nearly all the pro-apoptotic BCL-2 family proteins while none of them are decreased in A549 cells that are not protected against cell death by hypoxia. In HepG2 cells, hypoxia decreased NOXA and BAD abundance and modified the electrophoretic mobility of BIMEL. BIM and NOXA are important mediators of etoposide-induced cell death in HepG2 cells and the hypoxia-induced modification of these proteins abundance or post-translational modifications partly account for chemoresistance. Finally, the modulation of the abundance and/or of the post-translational modifications of most proteins of the BCL-2 family by hypoxia involves p53-dependent and –independent pathways and is cell type-dependent. A better understanding of these cell-to-cell variations is crucial in order to overcome hypoxia-induced resistance and to ameliorate cancer therapy.
机译:低氧在肿瘤细胞对化学疗法的抗性中起重要作用。但是,此过程的确切机制尚不完全清楚。此外,根据细胞系,缺氧会影响细胞死亡。缺氧对5种化疗药物在7种癌细胞中诱导的凋亡的影响研究表明,缺氧通常会抑制药物诱导的凋亡。在大多数情况下,一种细胞类型中所有药物的缺氧效应都是相同的。然后研究了涉及凋亡的93个基因的表达谱以及BCL-2家族蛋白的蛋白水平。在通过缺氧强烈防止细胞死亡的HepG2细胞中,缺氧降低了几乎所有促凋亡的BCL-2家族蛋白的丰度,而在没有受到缺氧保护的细胞死亡的A549细胞中,它们均没有降低。在HepG2细胞中,缺氧会降低NOXA和BAD的丰度并改变BIMEL的电泳迁移率。 BIM和NOXA是依托泊苷诱导的HepG2细胞死亡的重要介体,低氧诱导的这些蛋白质丰度修饰或翻译后修饰部分解释了化学抗性。最后,缺氧对大多数BCL-2家族蛋白质的丰度和/或翻译后修饰的调节涉及p53依赖性和非依赖性途径,并且是细胞类型依赖性的。为了克服缺氧诱导的耐药性并改善癌症治疗,对这些细胞间差异的更好理解至关重要。

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