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衰老相关变化在 Nothobranchius furzeri 的线粒体膜组成中。:与寿命更长的 Nothobranchius 物种的比较。

Age-related changes in mitochondrial membrane composition of Nothobranchius furzeri.: comparison with a longer-living Nothobranchius species.

机构信息

Chronobiology Lab, Department of Physiology, College of Biology, University of Murcia, Mare Nostrum Campus, IUIE, IMIB-Arrixaca, Murcia, Spain.

Ciber Fragilidad y Envejecimiento Saludable (CIBERFES), Madrid, Spain.

出版信息

Biogerontology. 2019 Feb;20(1):83-92. doi: 10.1007/s10522-018-9778-0. Epub 2018 Oct 9.

DOI:10.1007/s10522-018-9778-0
PMID:30306289
Abstract

Membrane compositions, particularly of mitochondria, could be critical factors in the mechanisms of growth and aging, especially during phases of high oxidative stress that result in molecular damage. Changes affecting lipid class or fatty acid (FA) compositions could affect phospholipid (PL) properties and alter mitochondrial function. In the present study, mitochondrial membrane PL compositions were analysed throughout the life-cycle of Nothobranchius furzeri, a species with explosive growth and one of the shortest-lived vertebrates. Mitochondrial PLs showed several changes with age. Proportions of total PLs and PC were reduced while an increase in PS, CL and PE was observed, mainly between the 2.5 and 5 months of fish age, the time during which animals doubled their weight. FA compositions of individual PLs in mitochondria were also significantly affected with age suggesting the existence of increasing damage to mitochondrial lipids during the life-cycle of N. furzeri that could be one of the main contributors to degraded mitochondrial function associated with aging. The peroxidation index values from N. furzeri mitochondrial PLs were significantly lower than those reported in N. rachovii, a species with a twofold longer life span than N. furzeri, which seems to contradict the membrane pacemaker theory of animal metabolism.

摘要

膜的组成部分,特别是线粒体的膜组成部分,可能是生长和衰老机制中的关键因素,尤其是在高氧化应激阶段,这会导致分子损伤。影响脂质类或脂肪酸 (FA) 组成的变化可能会影响磷脂 (PL) 的性质并改变线粒体的功能。在本研究中,我们分析了具有爆发式生长且是寿命最短的脊椎动物之一的非洲鲫鱼的整个生命周期中线粒体膜 PL 的组成。线粒体 PL 随年龄发生了多种变化。总 PL 和 PC 的比例减少,而 PS、CL 和 PE 的比例增加,主要发生在鱼类 2.5 至 5 个月大的时候,此时动物体重增加了一倍。个体 PL 的 FA 组成也随年龄显著变化,这表明在非洲鲫鱼的生命周期中,线粒体脂质的损伤不断增加,这可能是与衰老相关的线粒体功能下降的主要原因之一。来自非洲鲫鱼线粒体 PL 的过氧化指数值明显低于报告的 Rachovia 属鱼类,后者的寿命比非洲鲫鱼长一倍,这似乎与动物代谢的膜起搏器理论相矛盾。

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