凋亡诱导因子的下调可破坏呼吸复合体I的功能。

M. Varecha, D. Páclová, J. Procházková, P. Matula, D. Cmarko, M. Kozubek
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引用次数: 2

摘要

最近的研究表明,凋亡蛋白凋亡诱导因子(AIF)在线粒体内也可能发挥重要的非凋亡功能。AIF被认为是呼吸链复合体I的重要组成部分,而呼吸链复合体I是超氧自由基的主要产生者。AIF可能扮演的角色仍存在争议。超氧化物的产生可以作为复合体I功能的一个有价值的测量,因为大部分的超氧化物是在那里产生的。因此,我们采用超氧化物特异性线粒体荧光染料检测超氧化物的产生。我们通过分析选定细胞系的超氧化物产生,研究了AIF敲除对线粒体复合体I功能的影响。我们的研究结果表明,与对照细胞相比,肿瘤端粒酶阳性(TP) AIF敲低细胞系的超氧化物产量显著增加,而非肿瘤细胞系和端粒选择性延长(ALT)的肿瘤端粒酶阴性细胞系的超氧化物产量减少。根据这些结果,我们可以得出结论,AIF敲低会破坏复合物I的功能,从而增加线粒体中超氧化物的产生。最近发现的TP癌细胞线粒体端粒酶活性可能是AIF耗竭对多种细胞系产生不同影响的原因,但这一假设有待进一步研究。
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Knockdown of apoptosis-inducing factor disrupts function of respiratory complex I.
Recent findings suggest that apoptotic protein apoptosis-inducing factor (AIF) may also play an important non-apoptotic function inside mitochondria. AIF was proposed to be an important component of respiratory chain complex I that is the major producer of superoxide radical. The possible role of AIF is still controversial. Superoxide production could be used as a valuable measure of complex I function, because the majority of superoxide is produced there. Therefore, we employed superoxide-specific mitochondrial fluorescence dye for detection of superoxide production. We studied an impact of AIF knockdown on function of mitochondrial complex I by analyzing superoxide production in selected cell lines. Our results show that tumoral telomerase-positive (TP) AIF knockdown cell lines display significant increase in superoxide production in comparison to control cells, while a non-tumoral cell line and tumoral telomerase-negative cell lines with alternative lengthening of telomeres (ALT) show a decrease in superoxide production. According to these results, we can conclude that AIF knockdown disrupts function of complex I and therefore increases the superoxide production in mitochondria. The distinct effect of AIF depletion in various cell lines could result from recently discovered activity of telomerase in mitochondria of TP cancer cells, but this hypothesis needs further investigation.
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