Suppr超能文献

作为离子和代谢性钠/钙交换相互作用的通用模型的鱿鱼制剂:生理病理学意义。

The squid preparation as a general model for ionic and metabolic Na+/Ca2+ exchange interactions: physiopathological implications.

作者信息

DiPolo R, Beaugé L

机构信息

Laboratorio de Fisiología Celular, Centro de Biofísica y Bioquímica, IVIC, Apartado 21827, Caracas 10020-A, Venezuela.

出版信息

Ann N Y Acad Sci. 2007 Mar;1099:135-51. doi: 10.1196/annals.1387.049.

Abstract

We propose an integrated kinetic model for the squid nerve Na+/Ca2+ exchanger based on experimental evidences obtained in dialyzed axons. This model satisfactorily explains the interrelationship between ionic (Na+(i)-H+(i)-Ca2+(i)) and metabolic (ATP, phosphoarginine (PA)) regulation of the exchanger. Data in dialyzed axons show that the Ca(i)-regulatory site located in the large intracellular loop plays a central role in the modulation by ATP by antagonizing the inhibitory Na+(i)-H+(i) synergism. We have used the Na(o)/Na(i) exchange mode to unequivocally measure the affinity of the Ca(i)-regulatory site. This allowed us to separate Ca(i)-regulatory from Ca(i)-transport sites and to estimate their respective affinities. In this work we show for the first time that under conditions of saturation of the Ca(i)-regulatory site (10 microM Ca2+(i), pH(i) 8.0), ATP have no effect on the Ca(i)-transport site. In addition, we have expanded our equilibrium kinetic model of ionic and metabolic interactions to a complete exchange cycle (circular model). This model, in which the Ca(i)-regulatory site plays a central role, accounts for the decrease in Na(i) inactivation, at high pH(i), high Ca2+(i,) and MgATP. Furthermore, the model also predicts the net Ca2+ movements across the exchanger based on the exchanger complexes redistribution both during physiological and pathological conditions (ischemia).

摘要

基于在透析轴突中获得的实验证据,我们提出了一种用于鱿鱼神经钠钙交换器的综合动力学模型。该模型令人满意地解释了离子(Na⁺(i)-H⁺(i)-Ca²⁺(i))和代谢(ATP、磷酸精氨酸(PA))对交换器调节之间的相互关系。透析轴突中的数据表明,位于大细胞内环中的Ca(i)调节位点通过拮抗抑制性的Na⁺(i)-H⁺(i)协同作用,在ATP调节中起核心作用。我们利用Na(o)/Na(i)交换模式明确测量了Ca(i)调节位点的亲和力。这使我们能够将Ca(i)调节位点与Ca(i)转运位点分开,并估计它们各自的亲和力。在这项工作中,我们首次表明,在Ca(i)调节位点饱和的条件下(10 microM Ca²⁺(i),pH(i) 8.0),ATP对Ca(i)转运位点没有影响。此外,我们已将离子和代谢相互作用的平衡动力学模型扩展到一个完整的交换循环(循环模型)。在该模型中,Ca(i)调节位点起核心作用,解释了在高pH(i)、高Ca²⁺(i)和MgATP条件下Na(i)失活的降低。此外,该模型还基于生理和病理条件(缺血)期间交换器复合物的重新分布,预测了跨交换器的净Ca²⁺移动。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验