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线粒体单倍型的差异影响线粒体呼吸的特定温度敏感性。

Mitochondrial haplotype divergences affect specific temperature sensitivity of mitochondrial respiration.

机构信息

School of Biotechnology and Biomolecular Sciences, University of New South Wales, Sydney 2052, Australia.

出版信息

J Bioenerg Biomembr. 2013 Feb;45(1-2):25-35. doi: 10.1007/s10863-012-9473-9. Epub 2012 Oct 3.

Abstract

The aim of this study was to investigate the effect of temperature changes on the functional properties of mitochondria from two sets of D. simulans fly lines harboring the siII and siIII haplotypes in a common nuclear genetic background. We studied four introgressed isofemale lines possessing the mtDNA of siII and the nuclear background of siIII (siII-introgressed) and four lines possessing siIII mitochondria with its native nuclear genome (siIII-controls). We assessed the catalytic capacities of electron transport system (ETS) at four different temperatures (12, 18, 24 and 28 ºC). The impact of temperature on the pyruvate dehydrogenase (PDH) activity, the mitochondrial respiration (coupled and uncoupled respiration), cytochrome c oxidase activity, as well as the excess capacity of complex IV (COX) were evaluated in these two sets of flies. Our results showed that the temperature coefficient values (Q(10)) measured for mitochondrial respiration in the lower range of temperatures (12 to 18 ºC) showed a 2 to 3 fold increase in siII-introgressed when compared to siIII-controls. This result shows that the impact of temperature on mitochondrial function is different between the two mitotypes studied. The Q(10) results seem to be linked to the apparent COX excess capacity of 193% for siIII-controls that is inexistent for siII-introgressed at 12 ºC. One explanation for these results is that the mitochondria can compensate for the disruption of mito-nuclear interactions at 24 ºC but not at lower temperatures. An alternate explanation would be that siII haplotype confer divergent kinetic properties to the ETS that translate to different temperature sensitivities.

摘要

本研究旨在探讨温度变化对携带 siII 和 siIII 单倍型的两组 D. simulans 果蝇系中线粒体功能特性的影响。我们研究了四个具有 siII mtDNA 和 siIII 核背景的同系异质雌蝇系(siII 导入系)和四个具有其天然核基因组的 siIII 线粒体的系(siIII 对照系)。我们评估了四个不同温度(12、18、24 和 28°C)下电子传递系统(ETS)的催化能力。在这两组果蝇中,评估了温度对丙酮酸脱氢酶(PDH)活性、线粒体呼吸(偶联和非偶联呼吸)、细胞色素 c 氧化酶活性以及复合物 IV(COX)剩余能力的影响。我们的结果表明,在较低温度范围(12 至 18°C)下测量的线粒体呼吸的温度系数值(Q(10)),与 siIII 对照相比,siII 导入系增加了 2 到 3 倍。这一结果表明,温度对两种研究的单倍型线粒体功能的影响不同。Q(10)的结果似乎与 siIII 对照的明显 COX 剩余能力 193%有关,而 siII 导入系在 12°C 时不存在这种情况。对于这些结果的一种解释是,线粒体可以在 24°C 时补偿线粒体-核相互作用的破坏,但不能在较低温度下补偿。另一种解释是,siII 单倍型赋予 ETS 不同的动力学特性,从而导致不同的温度敏感性。

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