首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Stimulatory Effects of Calcium on Respiration and NAD(P)H Synthesis in Intact Rat Heart Mitochondria Utilizing Physiological Substrates Cannot Explain Respiratory Control in Vivo
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Stimulatory Effects of Calcium on Respiration and NAD(P)H Synthesis in Intact Rat Heart Mitochondria Utilizing Physiological Substrates Cannot Explain Respiratory Control in Vivo

机译:钙对利用生理性基质的完整大鼠心脏线粒体的呼吸和NAD(P)H合成的刺激作用无法解释体内的呼吸控制。

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摘要

Mitochondrial TCA cycle dehydrogenase enzymes have been shown to be stimulated by Ca2+ under various substrate and ADP incubation conditions in an attempt to determine and understand the role of Ca2+ in maintaining energy homeostasis in working hearts. In this study, we tested the hypothesis that, at physiological temperature and 1 mm extramitochondrial free magnesium, Ca2+ can stimulate the overall mitochondrial NAD(P)H generation flux in rat heart mitochondria utilizing pyruvate and malate as substrates at both subsaturating and saturating concentrations. In both cases, we found that, in the physiological regime of mitochondrial oxygen consumption observed in the intact animal and in the physiological range of cytosolic Ca2+ concentration averaged per beat, Ca2+ had no observable stimulatory effect. A modest apparent stimulatory effect (22–27%) was observable at supraphysiological maximal ADP-stimulated respiration at 2.5 mm initial phosphate. The stimulatory effects observed over the physiological Ca2+ range are not sufficient to make a significant contribution to the control of oxidative phosphorylation in the heart in vivo.
机译:已证明在各种底物和ADP孵育条件下,Ca 2 + 刺激线粒体TCA循环脱氢酶,试图确定和了解Ca 2 + 在体内的作用。在工作中保持能量稳态。在这项研究中,我们检验了以下假设:在生理温度和1 mm线粒体游离镁的作用下,Ca 2 + 可以利用丙酮酸和苹果酸刺激大鼠心脏线粒体中整个线粒体NAD(P)H生成通量作为底物既处于饱和浓度又处于饱和浓度。在这两种情况下,我们都发现,在完整动物观察到的线粒体耗氧的生理状态中以及在每次搏动的平均胞质内Ca 2 + 浓度的生理范围内,Ca 2+ < / sup>没有可观察到的刺激作用。在2.5 mm初始磷酸盐下,由超生理学最大的ADP刺激的呼吸可观察到适度的表观刺激作用(22–27%)。在生理Ca 2 + 范围内观察到的刺激作用不足以对体内心脏氧化磷酸化的控制做出重大贡献。

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