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Mitochondrial DNA variability modulates mRNA and intra-mitochondrial protein levels of HSP60 and HSP75: experimental evidence from cybrid lines

机译:线粒体DNA变异性调节HSP60和HSP75的mRNA和线粒体内蛋白水平:来自杂交系的实验证据

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To explore possible relationships between mitochondrial DNA (mtDNA) polymorphism and the expression levels of stress-responder nuclear genes we assembled five cybrid cell lines by repopulating 143B.TK? cells, depleted of their own mtDNA (Rho0 cells), with foreign mitochondria with different mtDNA sequences (lines H, J, T, U, X). We evaluated, at both basal and under heat stress conditions, gene expression (mRNA) and intra-mitochondrial protein levels of HSP60 and HSP75, two key components in cellular stress response. At basal conditions, the levels of HSP60 and HSP75 mRNA were lower in one cybrid (H) than in the others (p?=?0.005 and p?=?0.001, respectively). Under stress conditions, the H line over-expressed both genes, so that the inter-cybrid difference was abolished. Moreover, the HSP60 intra-mitochondrial protein levels differed among the cybrid lines (p?=?0.001), with levels higher in H than in the other cybrid lines. On the whole, our results provide further experimental evidence that mtDNA variability influences the cell response to stressful conditions by modulating components involved in this response. Sentence summary of the article: the results reported in the present study provide important experimental evidence that in human cells mtDNA variability is able to influence the cellular response to heat stress by modulating both the transcription of genes involved in this response and their intra-mitochondrial protein levels.
机译:为了探索线粒体DNA(mtDNA)多态性与应激反应者核基因表达水平之间的可能关系,我们通过重新填充143B.TK组装了五种杂交细胞系。缺失了自身mtDNA的细胞(Rho0细胞),外来线粒体具有不同的mtDNA序列(H,J,T,U,X线)。我们在基础和热应激条件下,评估了细胞应激反应的两个关键成分HSP60和HSP75的基因表达(mRNA)和线粒体内蛋白水平。在基础条件下,一个杂种(H)中的HSP60和HSP75 mRNA的水平要低于其他杂种(H,分别为p = 0.005和p = 0.001)。在胁迫条件下,H线都过表达两个基因,因此消除了杂种间的差异。此外,HSP60的线粒体内蛋白水平在各种杂交系中也不同(p≥0.001),H水平高于其他杂交系。总体而言,我们的结果提供了进一步的实验证据,表明mtDNA的变异性通过调节参与该反应的成分而影响细胞对应激条件的反应。句子摘要:本研究报告的结果提供了重要的实验证据,即在人类细胞中,mtDNA变异性能够通过调节参与该反应的基因及其线粒体内蛋白的转录,从而影响细胞对热应激的反应水平。

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