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在澳洲绵羊 blowfly Lucilla cuprina 的飞行肌肉发育过程中,线粒体钙转运对外源磷酸盐反应的变化。

Changes in the response of mitochondrial calcium transport to exogenous phosphate during development in flight muscle of the sheep blowfly Lucilla cuprina.

作者信息

Smith R L, Bygrave F L

出版信息

Biochem J. 1978 Jan 15;170(1):81-5. doi: 10.1042/bj1700081.

Abstract
  1. Ca2+ transport by mitochondria isolated from flight muscle of the sheep blowfly Lucilla cuprina does not occur in the absence of added P1. Maximum rates of transport are attained when about 2.5 mM-phosphate is present. 2. As mitochondria develop, high but not low phosphate concentrations begin to inhibit Ca2+ transport markedly; those isolated from 2-day-old flies for example, are inhibited by about 75% by 20 mM-phosphate. Maximum rates of transport, i.e. those measured in the presence of 2.5 mM-phosphate, begin to decline only when the fly is about 3 days old. 3. Mitochondrial phosphate transport activity does not change during development of the blowfly, but the endogenous concentration of the anion does. At emergence it is about 6nmol/mg of protein, increases to about 17 nmol/mg of protein at 2-3h and then rapidly declines to reach less than 5 nmol/mg of protein after 2 days of adult life. 4. Studies on the effect of phosphate on oxidation of alpha-glycerophosphate in the absence and presence of ADP reveal a lack of inhibition by high phosphate concentrations indicating that the anion does not influence Ca2+ transport by preventing the generation of the proton electrochemical gradient across the inner membrane. 5. It is concluded that the molecular assembly in the inner membrane of Lucilla mitochondria responsible for transporting Ca2+ is fully developed at emergence and remains so for at least 2-3 days of adult life. The possibility exists that Ca2+-transport activity in these mitochondria is controlled at least in part by P1.
摘要
  1. 从羊绿蝇(Lucilla cuprina)飞行肌中分离出的线粒体,在没有添加P1的情况下不会发生Ca2+转运。当存在约2.5 mM磷酸盐时,可达到最大转运速率。2. 随着线粒体的发育,高浓度而非低浓度的磷酸盐开始显著抑制Ca2+转运;例如,从2日龄苍蝇中分离出的线粒体,在20 mM磷酸盐存在下会被抑制约75%。最大转运速率,即在2.5 mM磷酸盐存在下测得的速率,仅在苍蝇约3日龄时开始下降。3. 在绿蝇发育过程中,线粒体磷酸盐转运活性没有变化,但阴离子的内源性浓度发生了变化。刚羽化时,其含量约为6 nmol/mg蛋白质,在2 - 3小时时增加到约17 nmol/mg蛋白质,然后在成年生活2天后迅速下降至低于5 nmol/mg蛋白质。4. 在不存在和存在ADP的情况下,研究磷酸盐对α - 甘油磷酸氧化的影响,结果表明高浓度磷酸盐没有抑制作用,这表明该阴离子不会通过阻止跨内膜质子电化学梯度的产生来影响Ca2+转运。5. 得出的结论是,负责转运Ca2+的绿蝇线粒体内膜中的分子组装在羽化时已完全发育,并在成年生活的至少2 - 3天内保持这种状态。这些线粒体中的Ca2+转运活性至少部分受P1控制的可能性存在。

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The respiratory chain and oxidative phosphorylation.呼吸链与氧化磷酸化。
Adv Enzymol Relat Subj Biochem. 1956;17:65-134. doi: 10.1002/9780470122624.ch2.
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Energy-linked ion movements in mitochondrial systems.线粒体系统中与能量相关的离子运动。
Adv Enzymol Relat Areas Mol Biol. 1967;29:259-320. doi: 10.1002/9780470122747.ch6.
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The effect of phosphoenolpyruvate on calcium transport by mitochondria.磷酸烯醇丙酮酸对线粒体钙转运的影响。
Biochim Biophys Acta. 1973 May 25;307(3):599-606. doi: 10.1016/0005-2736(73)90304-0.
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The energy-dependent accumulation of phosphate by blowfly mitochondria and its effect on the rate of pyruvate oxidation.
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