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The Plant Decapeptide OSIP108 Can Alleviate Mitochondrial Dysfunction Induced by Cisplatin in Human Cells

机译:植物十肽OSIP108可以减轻顺铂在人体细胞中引起的线粒体功能障碍

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We investigated the effect of the Arabidopsis thaliana-derived decapeptide OSIP108 on human cell tolerance to the chemotherapeutic agent cisplatin (Cp), which induces apoptosis and mitochondrial dysfunction. We found that OSIP108 increases the tolerance of HepG2 cells to Cp and prevents Cp-induced changes in basic cellular metabolism. More specifically, we demonstrate that OSIP108 reduces Cp-induced inhibition of respiration, decreases glycolysis and prevents Cp-uptake in HepG2 cells. Apart from its protective action against Cp in human cells, OSIP108 also increases the yeast Saccharomyces cerevisiae tolerance to Cp. A limited yeast-based study of OSIP108 analogs showed that cyclization does not severely affect its activity, which was further confirmed in HepG2 cells. Furthermore, the similarity in the activity of the D-stereoisomer (mirror image) form of OSIP108 with the L-stereoisomer suggests that its mode of action does not involve binding to a stereospecific receptor. In addition, as OSIP108 decreases Cp uptake in HepG2 cells and the anti-Cp activity of OSIP108 analogs without free cysteine is reduced, OSIP108 seems to protect against Cp-induced toxicity only partly via complexation. Taken together, our data indicate that OSIP108 and its cyclic derivatives can protect against Cp-induced toxicity and, thus, show potential as treatment options for mitochondrial dysfunction-and apoptosis-related conditions.
机译:我们研究了拟南芥衍生的十肽OSIP108对人细胞对化学治疗剂顺铂(Cp)的耐受性的作用,后者可诱导细胞凋亡和线粒体功能障碍。我们发现OSIP108增加了HepG2细胞对Cp的耐受性,并防止了Cp诱导的基本细胞代谢变化。更具体地说,我们证明OSIP108减少了Cp诱导的呼吸抑制,减少了糖酵解并防止了HepG2细胞中Cp的摄取。除了对人细胞中Cp的保护作用外,OSIP108还增加了酿酒酵母对Cp的耐受性。 OSIP108类似物的基于酵母的有限研究表明,环化不会严重影响其活性,这一点在HepG2细胞中得到了进一步证实。此外,OSIP108的D-立体异构体(镜像图像)形式的活性与L-立体异构体的相似性表明,其作用方式不涉及与立体特异性受体的结合。此外,由于OSIP108降低了HepG2细胞中Cp的摄取,并且降低了不含游离半胱氨酸的OSIP108类似物的抗Cp活性,OSIP108似乎只能部分地通过络合来防御Cp诱导的毒性。两者合计,我们的数据表明OSIP108及其环状衍生物可以防止Cp诱导的毒性,因此显示了作为线粒体功能障碍和细胞凋亡相关疾病的治疗选择的潜力。

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