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电子传递系统超复合物影响冬眠动物(三线黄鼠)和非冬眠动物(褐家鼠)体内活性氧的产生及呼吸作用。

Electron transport system supercomplexes affect reactive-oxygen species production and respiration in both a hibernator (Ictidomys tridecemlineatus) and a nonhibernator (Rattus norvegicus).

作者信息

Hutchinson Amalie J, Duffy Brynne M, Staples James F

机构信息

Department of Biology, University of Western Ontario, London, ON, N6A 5B7, Canada.

出版信息

J Comp Physiol B. 2024 Feb;194(1):81-93. doi: 10.1007/s00360-023-01525-1. Epub 2023 Nov 18.

Abstract

Across many taxa, the complexes of the electron transport system associate with each other within the inner mitochondrial membrane to form supercomplexes (SCs). These SCs are thought to confer some selective advantage, such as increasing cellular respiratory capacity or decreasing the production of damaging reactive oxygen species (ROS). In this study, we investigate the relationship between supercomplex abundance and performance of liver mitochondria isolated from rats that do not hibernate and hibernating ground squirrels in which metabolism fluctuates substantially. We quantified the abundance of SCs (respirasomes (SCs containing CI, CIII, and CIV) or SCs containing CIII and CIV) and examined the relationship with state 3 (OXPHOS) and state 4 (LEAK) respiration rate, as well as net ROS production. We found that, in rats, state 3 and 4 respiration rate correlated negatively with respirasome abundance, but positively with CIII/CIV SC abundance. Despite the greater range of respiration rates in different hibernation stages, these relationships were similar in ground squirrels. This is, to our knowledge, the first report of differential effects of supercomplex types on mitochondrial respiration and ROS production.

摘要

在许多生物分类群中,电子传递系统的复合物在线粒体内膜内相互结合形成超复合物(SCs)。这些超复合物被认为具有一些选择性优势,例如提高细胞呼吸能力或减少有害活性氧(ROS)的产生。在本研究中,我们调查了从不冬眠的大鼠和代谢大幅波动的冬眠地松鼠中分离出的肝脏线粒体的超复合物丰度与性能之间的关系。我们量化了超复合物(呼吸体(包含CI、CIII和CIV的超复合物)或包含CIII和CIV的超复合物)的丰度,并研究了其与状态3(氧化磷酸化)和状态4(渗漏)呼吸速率以及净ROS产生之间的关系。我们发现,在大鼠中,状态3和4的呼吸速率与呼吸体丰度呈负相关,但与CIII/CIV超复合物丰度呈正相关。尽管不同冬眠阶段的呼吸速率范围更大,但这些关系在地松鼠中相似。据我们所知,这是关于超复合物类型对线粒体呼吸和ROS产生的不同影响的首次报道。

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