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心肌细胞中钙处理蛋白的基因操作。II. 数学建模研究。

Genetic manipulation of calcium-handling proteins in cardiac myocytes. II. Mathematical modeling studies.

作者信息

Coutu Pierre, Metzger Joseph M

机构信息

Department of Biomedical Engineering, University of Michigan, Ann Arbor, Michigan 48109-0622, USA.

出版信息

Am J Physiol Heart Circ Physiol. 2005 Feb;288(2):H613-31. doi: 10.1152/ajpheart.00425.2004. Epub 2004 Aug 26.

Abstract

We developed a mathematical model specific to rat ventricular myocytes that includes electrophysiological representation, ionic homeostasis, force production, and sarcomere movement. We used this model to interpret, analyze, and compare two genetic manipulations that have been shown to increase myocyte relaxation rates, parvalbumin (Parv) de novo expression, and sarco(endo)plasmic reticulum Ca(2+)-ATPase (SERCA2a) overexpression. The model was used to seek mechanistic insights into 1) the relative contribution of two mechanisms by which SERCA2a overexpression modifies Ca2+ sequestration, i.e., more pumps and an increase in the SERCA2a-to-phospholamban ratio, 2) the mechanisms behind postrest potentiation and how Parv and SERCA2a influence this response, and 3) why Parv myocytes retain their fast kinetics when endogenous SERCA2a is partially impaired by thapsigargin (a condition used to mimic diastolic dysfunction). The model was also utilized to predict whether Parv metal-binding characteristics might be modified to improve diastolic and systolic functions and whether Parv or SERCA2a might affect diastolic Ca2+ levels and myocyte energetics. One outcome of the model was to demonstrate a higher peak and total ATP consumption in SERCA2a myocytes and more even distribution of ATP throughout the cardiac cycle in Parv myocytes. This may have implications for failing hearts that are energetically compromised.

摘要

我们开发了一种特定于大鼠心室肌细胞的数学模型,该模型包括电生理表征、离子稳态、力的产生和肌节运动。我们使用这个模型来解释、分析和比较两种已被证明可提高肌细胞舒张速率的基因操作,即小白蛋白(Parv)的从头表达和肌浆网Ca(2+) -ATP酶(SERCA2a)的过表达。该模型用于深入探究以下机制:1)SERCA2a过表达修饰Ca2+ 螯合的两种机制的相对贡献,即更多的泵以及SERCA2a与受磷蛋白比例的增加;2)静息后增强背后的机制以及Parv和SERCA2a如何影响这种反应;3)当内源性SERCA2a被毒胡萝卜素部分损害时(一种用于模拟舒张功能障碍的情况),Parv肌细胞为何仍保持其快速动力学。该模型还用于预测是否可以改变Parv的金属结合特性以改善舒张和收缩功能,以及Parv或SERCA2a是否可能影响舒张期Ca2+ 水平和肌细胞能量学。该模型的一个结果是表明SERCA2a肌细胞中的ATP消耗峰值和总量更高,而Parv肌细胞在整个心动周期中ATP分布更均匀。这可能对能量受损的衰竭心脏有影响。

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