首页> 外文期刊>The Journal of Experimental Biology >Mitochondrial proton leak rates in the slow, oxidative myotomal muscle and liver of the endothermic shortfin mako shark (Isurus oxyrinchus) and the ectothermic blue shark (Prionace glauca) and leopard shark (Triakis semifasciata)
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Mitochondrial proton leak rates in the slow, oxidative myotomal muscle and liver of the endothermic shortfin mako shark (Isurus oxyrinchus) and the ectothermic blue shark (Prionace glauca) and leopard shark (Triakis semifasciata)

机译:吸热的短鳍鲨(Isurus oxyrinchus)和放热的蓝鲨(Prionace glauca)和豹鲨(Triakis semifasciata)的缓慢的氧化性肌膜肌肉和肝脏中的线粒体质子泄漏率

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Mitochondrial proton leak was assessed as a potential heat source in the slow, oxidative (red) locomotor muscle and liver of the shortfin mako shark (Isurus oxyrinchus), a regional endotherm that maintains the temperature of both tissues elevated above ambient seawater temperature. We hypothesized that basal proton leak rates in red muscle and liver mitochondria of the endothermic shortfin mako shark would be greater than those of the ectothermic blue shark (Prionace glauca) and leopard shark (Triakis semifasciata). Respiration rate and membrane potential in isolated mitochondria were measured simultaneously at 20 degrees C using a Clark-type oxygen electrode and a lipophilic probe (triphenylmethylphosphonium, TPMP(+)). Succinate-stimulated respiration was titrated with inhibitors of the electron transport chain, and the non-linear relationship between respiration rate and membrane potential was quantified. Mitochondrial densities of both tissues were measured by applying the point-contact method to electron micrographs so that proton leak activity of the entire tissue could be assessed. In all three shark species, proton leak occurred at a higher rate in red muscle mitochondria than in liver mitochondria. For each tissue, the proton leak curves of the three species overlapped and, at a membrane potential of 160 mV, mitochondrial proton leak rate (nmol H(+) min(-1) mg(-1) protein) did not differ significantly between the endothermic and ectothermic sharks. This finding indicates that red muscle and liver mitochondria of the shortfin mako shark are not specialized for thermogenesis by having a higher proton conductance. However, mako mitochondria did have higher succinate-stimulated respiration rates and membrane potentials than those of the two ectothermic sharks. This means that under in vivo conditions mitochondrial proton leak rates may be higher in the mako than in the ectothermic species, due to greater electron transport activity and a larger proton gradient driving proton leak. We also estimated each tissue's total proton leak by combining mitochondrial proton leak rates at 160 mV and tissue mitochondrial density data with published values of relative liver or red muscle mass for each of the three species. In red muscle, total proton leak was not elevated in the mako shark relative to the two ectothermic species. In the liver, total proton leak would be higher in the mako shark than in both ectothermic species, due to a lower proton conductance in the blue shark and a lower liver mitochondrial content in the leopard shark, and thus may contribute to endothermy.
机译:线粒体质子泄漏被评估为短鳍鲨(Isurus oxyrinchus)的缓慢,氧化(红色)运动肌肉和肝脏中的潜在热源,该鲨鱼是区域性吸热体,可维持两个组织的温度都高于周围海水温度。我们假设吸热短鳍鲨的红色肌肉和肝脏线粒体中的基础质子泄漏率将大于吸热蓝鲨(Prionace glauca)和豹鲨(Triakis semifasciata)。使用Clark型氧电极和亲脂性探针(三苯甲基phosph,TPMP(+)),同时在20摄氏度下同时测量分离的线粒体中的呼吸速率和膜电位。用电子传输链的抑制剂滴定琥珀酸盐刺激的呼吸,并定量呼吸速率和膜电位之间的非线性关系。通过将点接触法应用于电子显微照片来测量两个组织的线粒体密度,从而可以评估整个组织的质子泄漏活性。在所有这三种鲨鱼物种中,红色肌肉线粒体的质子泄漏发生率高于肝脏线粒体。对于每个组织,这三个物种的质子泄漏曲线重叠,并且在膜电位为160 mV时,线粒体质子泄漏率(nmol H(+)min(-1)mg(-1)蛋白质)之间没有显着差异。吸热和放热的鲨鱼。该发现表明,短翅鲨的红色肌肉和肝脏线粒体不具有更高的质子传导性,专门用于生热。但是,与两个电热鲨相比,魔芋线粒体确实具有更高的琥珀酸刺激呼吸速率和膜电位。这意味着,在体内条件下,由于更大的电子传输活性和更大的质子梯度驱动质子泄漏,因此mako中线粒体质子的泄漏速率可能比外热物种中的更高。我们还通过将160 mV的线粒体质子泄漏率和组织线粒体密度数据与三种物种中每种的相对肝脏或红色肌肉质量的公开值相结合,估计了每个组织的总质子泄漏。在红色肌肉中,相对于两种外温物种,在魔鲨中总的质子泄漏没有增加。在肝脏中,由于蓝鲨的质子传导率较低,而豹鲨的肝线粒体含量较低,因此玛科鲨中的总质子泄漏将高于两种吸热物种。

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