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首页> 外文期刊>Journal of Cell Science >Carboxyamidotriazole-induced inhibition of mitochondrial calcium import blocks capacitative calcium entry and cell proliferation in HEK-293 cells
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Carboxyamidotriazole-induced inhibition of mitochondrial calcium import blocks capacitative calcium entry and cell proliferation in HEK-293 cells

机译:羧酰氨基三唑对线粒体钙输入的抑制作用抑制了HEK-293细胞中的钙离子进入和细胞增殖

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摘要

Blocking calcium entry may prevent normal and pathological cell proliferation. There is evidence suggesting that molecules such as carboxyamidotriazole, widely used in anti-cancer therapy based on its ability to block calcium entry in nonexcitable cells, also have antiproliferative properties. We found that carboxyamidotriazole and the capacitative calcium entry blocker 2-aminoethoxydiphenyl borate inhibited proliferation in HEK-293 cells with IC50 values of 1.6 and 50 mu M, respectively. Capacitative calcium entry is activated as a result of intracellular calcium store depletion. However, non-capacitative calcium entry pathways exist that are independent of store depletion and are activated by arachidonic acid and diacylglycerol, generated subsequent to G protein coupled receptor stimulation. We found that carboxyamidotriazole completely inhibited the capacitative calcium entry and had no effect on the amplitude of arachidonic-acid-activated non-capacitative calcium entry. However, investigation of the effects of carboxyamidotriazole on mitochondrial calcium dynamics induced by carbachol, capacitative calcium entry and exogenously set calcium loads in intact and digitonin-permeabilized cells revealed that carboxyamidotriazole inhibited both calcium entry and mitochondrial calcium uptake in a time-dependent manner. Mitochondrial inner-membrane potential was altered by carboxyamidotriazole treatment, suggesting that carboxyamidotriazole antagonizes mitochondrial calcium import and thus local calcium clearance, which is crucial for the maintenance of capacitative calcium entry.
机译:阻止钙进入可能会阻止正常和病理性细胞增殖。有证据表明,诸如羧酰胺基三唑之类的分子由于其阻止钙进入非兴奋性细胞的能力而广泛用于抗癌治疗,也具有抗增殖特性。我们发现,羧基酰胺基三唑和电容性钙离子进入阻滞剂2-氨基乙氧基二苯硼酸酯抑制HEK-293细胞的增殖,IC50值分别为1.6和50μM。由于细胞内钙储存的耗竭,激活了钙的进入。然而,存在非电容性钙进入途径,其独立于商店的消耗,并被花生四烯酸和二酰基甘油激活,而花生四烯酸和二酰基甘油是在G蛋白偶联受体刺激后产生的。我们发现,羧酰胺基三唑完全抑制了电容性钙的进入,对花生四烯酸活化的非电容性钙的进入幅度没有影响。然而,对羧酰胺三唑对卡巴胆碱诱导的线粒体钙动力学,电容性钙进入和外源设定钙负荷的作用的研究表明,羧酰胺三唑以时间依赖性的方式抑制了钙的进入和线粒体钙的吸收。羧酰胺基三唑处理改变了线粒体内膜电位,表明羧酰胺基三唑拮抗线粒体钙的输入,从而抑制了局部钙的清除,这对于维持电容性钙的进入至关重要。

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