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News about VDAC1 in Hypoxia

机译:有关缺氧的VDAC1的新闻

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The voltage-dependent anion channel (VDAC) is the main interface between the cytosol and mitochondria of cells. It plays a crucial role in both mitochondrial metabolism and cell death. The main basic function of this channel is to mediate and gate the flux of small ions, metabolites, and adenosine triphosphate. Changes in its structure, and thus conformation, are expected to affect its activity and modulate the ability of cancer cells to expand. In this review, we describe a novel mechanism by which mitochondria of cells in hypoxia, a low level of oxygen, protects from apoptosis. In hypoxia, some mitochondria become enlarged due to hyperfusion. These mitochondria possess a truncated form of VDAC1 (VDAC1-ΔC), which is linked to the higher metabolic capacity and the greater resistance to cell death of hypoxic cells. However, not all of the VDAC1 protein is truncated, but the amount of the full-length form is diminished compared to the amount in normoxic cells. First, we describe how such a decrease effects cell proliferation, respiration, glycolysis, and other processes. Second, we report on a novel mitochondrial-endolysosomal crosstalk that leads to VDAC1 truncation. By pharmacological targeting of VDAC1-ΔC, the production of energy could be turned off and the sensitivity to cell death restored. This could counteract the favorable microenvironment that gives cancer cells a growth advantage and thereby disrupts the balance between life and death, which is controlled by VDAC1.
机译:电压依赖性阴离子通道(VDAC)是细胞溶质与细胞线粒体之间的主要界面。它在线粒体代谢和细胞死亡中都起着至关重要的作用。该通道的主要基本功能是介导和控制小离子,代谢物和三磷酸腺苷的通量。预期其结构的变化以及由此的构象的变化会影响其活性并调节癌细胞的扩增能力。在这篇综述中,我们描述了一种新的机制,通过该机制,低氧,低氧水平的细胞线粒体可以防止细胞凋亡。在缺氧状态下,某些线粒体由于过度融合而变大。这些线粒体具有截短形式的VDAC1(VDAC1-ΔC),这与较高的代谢能力和对缺氧细胞的细胞死亡更大的抵抗力有关。但是,并非所有的VDAC1蛋白都被截断,但与正常氧细胞相比,全长形式的数量减少了。首先,我们描述这种减少如何影响细胞增殖,呼吸作用,糖酵解和其他过程。其次,我们报告了导致VDAC1截短的新型线粒体-溶酶体串扰。通过VDAC1-ΔC的药理靶向,可以关闭能量产生,恢复对细胞死亡的敏感性。这可能抵消有利的微环境,该环境赋予癌细胞生长优势,从而破坏了由VDAC1控制的生与死之间的平衡。

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