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钙通过推拉能量学来维持心房细胞中的ATP平衡:计算见解。

Ca pushes and pulls energetics to maintain ATP balance in atrial cells: computational insights.

作者信息

Keidar Noam, Peretz Noa Kirschner, Yaniv Yael

机构信息

Laboratory of Bioenergetic and Bioelectric Systems, Biomedical Engineering Faculty, Technion-Israel Institute of Technology (IIT), Haifa, Israel.

出版信息

Front Physiol. 2023 Jul 17;14:1231259. doi: 10.3389/fphys.2023.1231259. eCollection 2023.

Abstract

To maintain atrial function, ATP supply-to-demand matching must be tightly controlled. Ca can modulate both energy consumption and production. In light of evidence suggesting that Ca affects energetics through "push" (activating metabolite flux and enzymes in the Krebs cycle to push the redox flux) and "pull" (acting directly on ATP synthase and driving the redox flux through the electron transport chain and increasing ATP production) pathways, we investigated whether both pathways are necessary to maintain atrial ATP supply-to-demand matching. Rabbit right atrial cells were electrically stimulated at different rates, and oxygen consumption and flavoprotein fluorescence were measured. To gain mechanistic insight into the regulators of ATP supply-to-demand matching in atrial cells, models of atrial electrophysiology, Ca cycling and force were integrated with a model of mitochondrial Ca and a modified model of mitochondrial energy metabolism. The experimental results showed that oxygen consumption increased in response to increases in the electrical stimulation rate. The model reproduced these findings and predicted that the increase in oxygen consumption is associated with metabolic homeostasis. The model predicted that Ca must act both in "push" and "pull" pathways to increase oxygen consumption. In contrast to ventricular trabeculae, no rapid time-dependent changes in mitochondrial flavoprotein fluorescence were measured upon an abrupt change in workload. The model reproduced these findings and predicted that the maintenance of metabolic homeostasis is due to the effects of Ca on ATP production. Taken together, this work provides evidence of Ca "push" and "pull" activity to maintain metabolic homeostasis in atrial cells.

摘要

为维持心房功能,必须严格控制ATP的供需匹配。钙可调节能量消耗与产生。鉴于有证据表明钙通过“推动”(激活代谢物通量和三羧酸循环中的酶以推动氧化还原通量)和“拉动”(直接作用于ATP合酶并通过电子传递链驱动氧化还原通量并增加ATP产生)途径影响能量代谢,我们研究了这两条途径对于维持心房ATP供需匹配是否都是必需的。以不同频率对兔右心房细胞进行电刺激,并测量氧消耗和黄素蛋白荧光。为深入了解心房细胞中ATP供需匹配的调节机制,将心房电生理学、钙循环和力的模型与线粒体钙模型和线粒体能量代谢的改进模型相结合。实验结果表明,氧消耗随电刺激频率的增加而增加。该模型重现了这些发现,并预测氧消耗的增加与代谢稳态相关。该模型预测,钙必须在“推动”和“拉动”途径中都发挥作用才能增加氧消耗。与心室小梁不同,当工作负荷突然变化时,未检测到线粒体黄素蛋白荧光的快速时间依赖性变化。该模型重现了这些发现,并预测代谢稳态的维持归因于钙对ATP产生的影响。综上所述,这项工作提供了钙的“推动”和“拉动”活性以维持心房细胞代谢稳态的证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0056/10387757/4197dd582048/fphys-14-1231259-g001.jpg

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