首页> 外文期刊>Biochimica et biophysica acta. Bioenergetics >Role of mitochondria-associated hexokinase II in cancer cell death induced by 3-bromopyruvate.
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Role of mitochondria-associated hexokinase II in cancer cell death induced by 3-bromopyruvate.

机译:线粒体相关的己糖激酶II在3-溴丙酮酸诱导的癌细胞死亡中的作用。

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摘要

It has long been observed that cancer cells rely more on glycolysis to generate ATP and actively use certain glycolytic metabolic intermediates for biosynthesis. Hexokinase II (HKII) is a key glycolytic enzyme that plays a role in the regulation of the mitochondria-initiated apoptotic cell death. As a potent inhibitor of hexokinase, 3-bromopyruvate (3-BrPA) is known to inhibit cancer cell energy metabolism and trigger cell death, supposedly through depletion of cellular ATP. The current study showed that 3-BrPA caused a covalent modification of HKII protein and directly triggered its dissociation from mitochondria, leading to a specific release of apoptosis-inducing factor (AIF) from the mitochondria to cytosol and eventual cell death. Co-immunoprecipitation revealed a physical interaction between HKII and AIF. Using a competitive peptide of HKII, we showed that the dissociation of hexokinase II from mitochondria alone could cause apoptotic cell death, especially in the mitochondria-deficient rho(0) cells that highly express HKII. Interestingly, the dissociation of HKII itself did not directly affect the mitochondrial membrane potential, ROS generation, and oxidative phosphorylation. Our study suggests that the physical association between HKII and AIF is important for the normal localization of AIF in the mitochondria, and disruption of this protein complex by 3-BrPA leads to their release from the mitochondria and eventual cell death.
机译:长期以来一直观察到癌细胞更多地依赖于糖酵解来生成ATP,并积极地使用某些糖酵解代谢中间体进行生物合成。己糖激酶II(HKII)是关键的糖酵解酶,在调节线粒体引发的凋亡细胞死亡中发挥作用。作为一种有效的己糖激酶抑制剂,已知3-溴丙酮酸(3-BrPA)可抑制癌细胞的能量代谢并触发细胞死亡,这可能是由于细胞ATP的消耗所致。当前的研究表明3-BrPA引起HKII蛋白的共价修饰,并直接触发其与线粒体的解离,从而导致凋亡诱导因子(AIF)从线粒体中释放到胞质中,最终导致细胞死亡。免疫共沉淀揭示了HKII和AIF之间的物理相互作用。我们使用竞争性的HKII肽,表明己糖激酶II从线粒体中解离会导致凋亡性细胞死亡,尤其是在高度表达HKII的线粒体缺陷rho(0)细胞中。有趣的是,HKII本身的解离并没有直接影响线粒体膜电位,ROS生成和氧化磷酸化。我们的研究表明,HKII和AIF之间的物理联系对于线粒体中AIF的正常定位很重要,而3-BrPA破坏这种蛋白质复合物会导致其从线粒体中释放出来并最终导致细胞死亡。

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