Mitochondrial oxidative phosphorylation (OXPHOS) defects are the primary cause of inborn errors of energy metabolism. Despite considerable progress on their genetic basis, their global pathophysiological consequences remain undefined. Previous studies reported that OXPHOS dysfunction associated with complex III deficiency exacerbated the expression and mitochondrial location of cytoskeletal gelsolin (GSN) to promote cell survival responses. In humans, besides the cytosolic isoform, GSN presents a plasma isoform secreted to extracellular environments. We analyzed the interplay between both GSN isoforms in human cellular and clinical models of OXPHOS dysfunction. Regardless of its pathogenic origin, OXPHOS dysfunction induced the physiological upregulation of cytosolic GSN in the mitochondria (mGSN), in parallel with a significant downregulation of plasma GSN (pGSN) levels. Consequently, significantly high mGSN-to-pGSN ratios were associated with OXPHOS deficiency both in human cells and blood. In contrast, control cells subjected to hydrogen peroxide or staurosporine treatments showed no correlation between oxidative stress or cell death induction and the altered levels and subcellular location of GSN isoforms, suggesting their specificity for OXPHOS dysfunction. In conclusion, a high mitochondrial-to-plasma GSN ratio represents a useful cellular indicator of OXPHOS defects, with potential use for future research of a wide range of clinical conditions with mitochondrial involvement.
Altered Expression Ratio of Actin-Binding Gelsolin Isoforms Is a Novel Hallmark of Mitochondrial OXPHOS Dysfunction.
肌动蛋白结合凝溶胶蛋白亚型表达比例的改变是线粒体氧化磷酸化功能障碍的新标志
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作者:GarcÃa-Bartolomé Alberto, Peñas Ana, Illescas MarÃa, Bermejo Verónica, López-Calcerrada Sandra, Pérez-Pérez Rafael, MarÃn-Buera Lorena, DomÃnguez-González Cristina, Arenas JoaquÃn, MartÃn Miguel A, Ugalde Cristina
| 期刊: | Cells | 影响因子: | 5.200 |
| 时间: | 2020 | 起止号: | 2020 Aug 19; 9(9):1922 |
| doi: | 10.3390/cells9091922 | 研究方向: | 免疫/内分泌 |
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