Pahima Hadas, Reina Simona, Tadmor Noa, Dadon-Klein Daniella, Shteinfer-Kuzmine Anna, Mazure Nathalie M, De Pinto Vito, Shoshan-Barmatz Varda
Department of Life Sciences and the National Institute for Biotechnology in the Negev, Ben-Gurion University of the Negev, Beer-Sheva 84105, Israel.
Department of Biomedicine and Biotechnology, University of Catania and National Institute for Biomembranes and Biosystems, Section of Catania, Catania 95125, Italy.
Oncotarget. 2018 Jan 31;9(16):12825-12841. doi: 10.18632/oncotarget.24377. eCollection 2018 Feb 27.
The voltage-dependent anion channel 1 (VDAC1), an outer mitochondria membrane (OMM) protein, serves as a mitochondrial gatekeeper, mediating the transport of nucleotides, Ca and other metabolites across the OMM. VDAC1 also plays a central role in mitochondria-mediated apoptosis by facilitating the release of apoptotic proteins and by association with both pro- and anti-apoptotic proteins. Tumor cells, which are constantly exposed to hypoxic conditions, affect the cell via the transcription factor hypoxia-inducible factor (HIF) that induces transcriptional activity. In cultured cells and in lung cancer patients, hypoxia induces VDAC1 truncation at the C-terminus (VDAC1-ΔC). However, the molecular mechanisms involved in VDAC1-ΔC formation are unknown. Here, we show that hypoxia-induced VDAC1-ΔC formation is inhibited by the Ca chelator BAPTA-AM, by calpain inhibitor-1, by inhibitor of the asparagine endopeptidase (AEP) and by si-RNA targeting HIF1-α or Ca-activated protease calpain-1 expression but not that of calpain-2. Finally, VDAC1-ΔC expressed in bacteria and reconstituted into a planar lipid bilayer exhibited decreased channel conductance relative to the full-length protein, yet retained voltage-dependent conductance. These findings suggest that hypoxia, acting via HIF-1α expression, leads to VDAC1 cleavage involving the activation of calpain 1 and AEP.
电压依赖性阴离子通道1(VDAC1)是一种线粒体外膜(OMM)蛋白,作为线粒体的守门人,介导核苷酸、钙离子和其他代谢物跨线粒体外膜的运输。VDAC1还通过促进凋亡蛋白的释放以及与促凋亡蛋白和抗凋亡蛋白的结合,在细胞凋亡的线粒体介导过程中发挥核心作用。肿瘤细胞经常暴露于缺氧环境中,通过诱导转录活性的转录因子缺氧诱导因子(HIF)影响细胞。在培养细胞和肺癌患者中,缺氧会诱导VDAC1在C端截短(VDAC1-ΔC)。然而,VDAC1-ΔC形成所涉及的分子机制尚不清楚。在此,我们表明,缺氧诱导的VDAC1-ΔC形成受到钙离子螯合剂BAPTA-AM、钙蛋白酶抑制剂-1、天冬酰胺内肽酶(AEP)抑制剂以及靶向HIF1-α或钙离子激活蛋白酶钙蛋白酶-1表达的小干扰RNA(si-RNA)的抑制,但不受钙蛋白酶-2表达的抑制。最后,在细菌中表达并重组到平面脂质双分子层中的VDAC1-ΔC相对于全长蛋白表现出降低的通道电导,但仍保留电压依赖性电导。这些发现表明,通过HIF-1α表达起作用的缺氧会导致VDAC1的切割,这涉及钙蛋白酶1和AEP的激活。