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线粒体呼吸和琥珀酸脱氢酶在进入冬眠阶段的早期就被抑制,但膜重塑只是短暂的。

Mitochondrial respiration and succinate dehydrogenase are suppressed early during entrance into a hibernation bout, but membrane remodeling is only transient.

机构信息

Department of Biology, University of Western Ontario, London, ON, N6A5B7, Canada.

出版信息

J Comp Physiol B. 2011 Jul;181(5):699-711. doi: 10.1007/s00360-010-0547-x. Epub 2011 Jan 5.

Abstract

We examined respiration and lipid composition of liver mitochondria purified from a hibernator (Ictidomys tridecemlineatus) in different stages of a torpor bout. Between interbout euthermia (body temperature, T (b), 37°C) and early entrance (T (b) 30°C), state 3 and state 4 respirations, fueled by 6 mM succinate, fell by over 50%. Mitochondrial respiration did not decline any further in the late entrance and torpor stages (T (b) 15 and 5°C, respectively). Succinate dehydrogenase (SDH) activity declined in a similar pattern as mitochondrial respiration, and there was a significant positive correlation between state 3 respiration and SDH activity. However, unlike during arousal from torpor, oxaloacetate was not a major factor in inhibition of SDH. Analysis of mitochondrial lipids showed little change in neutral lipids or phospholipid classes, except for a transient decrease in phosphatidylethanolamine content in early entrance. In the transition from interbout euthermia to early entrance, we found transient increases in some saturated phospholipid fatty acids (16:0, 18:0) and decreases in some unsaturates (18:2, 20:4). These changes resulted in transient increases in total saturates and the ratio of saturates to unsaturates, and transient decreases in total unsaturates, total polyunsaturates, total n-6, the ratio of monounsaturates to polyunsaturates, and unsaturation index. None of these changes persisted into late entrance or torpor, nor did they correlate with mitochondrial respiration. We conclude that mitochondrial metabolic suppression during entrance into a torpor bout occurs very early and is likely related to acute regulation of electron transport chain enzymes rather than changes in membrane phospholipid composition.

摘要

我们研究了在蛰伏期(Ictidomys tridecemlineatus)不同阶段中,从肝线粒体中纯化出来的呼吸作用和脂质组成。在蛰伏期之间的清醒期(体温 Tb 为 37°C)和早期进入期(Tb 为 30°C)之间,由 6 mM 琥珀酸盐提供燃料的状态 3 和状态 4 呼吸作用下降了超过 50%。在晚期进入期和蛰伏期(分别为 Tb 为 15°C 和 5°C),线粒体呼吸作用没有进一步下降。琥珀酸脱氢酶(SDH)活性的下降模式与线粒体呼吸作用相似,并且状态 3 呼吸作用与 SDH 活性之间存在显著的正相关。然而,与从蛰伏中苏醒不同,草酰乙酸并不是抑制 SDH 的主要因素。线粒体脂质分析显示中性脂质或磷脂类别的变化很小,除了早期进入期磷脂酰乙醇胺含量短暂下降。在从蛰伏期之间的清醒期过渡到早期进入期期间,我们发现一些饱和磷脂脂肪酸(16:0、18:0)的含量短暂增加,而一些不饱和脂肪酸(18:2、20:4)的含量减少。这些变化导致总饱和物和饱和物与不饱和物的比例短暂增加,总不饱和物、总多不饱和物、总 n-6、单不饱和物与多不饱和物的比例以及不饱和指数短暂减少。这些变化没有持续到晚期进入期或蛰伏期,也与线粒体呼吸作用无关。我们得出结论,进入蛰伏期期间线粒体代谢抑制发生得非常早,可能与电子传递链酶的急性调节有关,而不是与膜磷脂组成的变化有关。

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