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Relationship between ATP level and respiratory rate in sea urchin embryos

机译:海胆胚胎中ATP水平与呼吸频率的关系

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In sea urchin embryos, the rate of respiration, as a result of electron transport through the mitochondrial respiratory chain, was enhanced after hatching without any change in the intrinsic capacity of electron transport in mitochondria. The increase in respiratory rate after hatching was accompanied by an evident decrease in intracellular adenosine triphosphate (ATP) concentration without any change in intracellular levels of adenosine diphosphate (ADP) and adenosine monophosphate (AMP). Adenosine triphosphate is proposed to fortify acceptor control of respiration at high concentations and to reduce the respiratory rate even in the presence of ADP, the acceptor. The relationships between the respiratory rate and intracellular ATP concentration in embryos were the same as those in mitochondria isolated from embryos, obtained in the presence of ADP at the same concentation as in the embryos. Probably, the respiratory rate is enhanced after hatching because of the decrease in the level of ATP. Inembryos kept in a medium containing adenosine, intracellular ATP concentration increased especially after hatching, without any change in the ADP level, and the respiratory rate after hatching was made as low as the rate expected, based on the relationships obtained on isolated mitochondria. The respiratory rate in embryos probably depends on intracellular ATP concentration, irrespective of the developmental stage in early development.
机译:在海胆胚胎中,由于通过线粒体呼吸链进行电子传输而导致的呼吸速率在孵化后得到了增强,而线粒体中电子传输的固有能力没有任何变化。孵化后呼吸频率的增加伴随着细胞内三磷酸腺苷(ATP)浓度的明显降低,而细胞内二磷酸腺苷(ADP)和单磷酸腺苷(AMP)的水平却没有任何变化。有人提出三磷酸腺苷可增强受体在高浓度下的呼吸控制,甚至在存在受体ADP的情况下也能降低呼吸频率。胚胎中呼吸频率与细胞内ATP浓度之间的关系与从胚胎中分离出的线粒体中的关系相同,线粒体是在ADP存在下以与胚胎中相同的浓度获得的。孵化后,由于ATP含量的降低,呼吸频率可能会提高。胚胎在含有腺苷的培养基中保存,尤其是在孵化后,胞内ATP浓度增加,而ADP水平没有任何变化,并且根据分离的线粒体获得的关系,将孵化后的呼吸速率降低到预期的速率。胚胎的呼吸频率可能取决于细胞内ATP的浓度,而与早期发育的发育阶段无关。

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