School of Systems Biology and The Krasnow Institute for Advanced Study, George Mason University, Fairfax, VA 22030, USA.
Department of Physiology, Pennsylvania Muscle Institute, University of Pennsylvania Perelman School of Medicine, Philadelphia, PA 19104, USA.
Cells. 2021 May 13;10(5):1189. doi: 10.3390/cells10051189.
The stretching of a cardiomyocyte leads to the increased production of reactive oxygen species that increases ryanodine receptor open probability through a process termed X-ROS signaling. The stretching of the myocyte also increases the calcium affinity of myofilament Troponin C, which increases its calcium buffering capacity. Here, an integrative experimental and modeling study is pursued to explain the interplay of length-dependent changes in calcium buffering by troponin and stretch-activated X-ROS calcium signaling. Using this combination, we show that the troponin C-dependent increase in myoplasmic calcium buffering during myocyte stretching largely offsets the X-ROS-dependent increase in calcium release from the sarcoplasmic reticulum. The combination of modeling and experiment are further informed by the elimination of length-dependent changes to troponin C calcium binding in the presence of blebbistatin. Here, the model suggests that it is the X-ROS signaling-dependent Ca release increase that serves to maintain free myoplasmic calcium concentrations during a change in myocyte length. Together, our experimental and modeling approaches have further defined the relative contributions of X-ROS signaling and the length-dependent calcium buffering by troponin in shaping the myoplasmic calcium transient.
肌原纤维肌钙蛋白 C 的钙结合能力增加,其钙缓冲能力也随之增加。在本研究中,我们采用整合的实验和建模研究方法,以解释肌钙蛋白的钙缓冲能力和由牵张激活的 X-ROS 钙信号之间的长度依赖性变化的相互作用。通过这种组合,我们表明,在肌细胞牵张过程中,肌浆钙离子缓冲的肌钙蛋白 C 依赖性增加在很大程度上抵消了肌浆网中钙离子释放的 X-ROS 依赖性增加。在 presence of blebbistatin 存在的情况下,模型和实验的结合进一步证实了肌钙蛋白 C 钙结合的长度依赖性变化的消除。在这里,该模型表明,正是 X-ROS 信号依赖性 Ca 释放增加有助于维持肌浆游离钙离子浓度在肌细胞长度变化过程中。总之,我们的实验和建模方法进一步定义了 X-ROS 信号和肌钙蛋白的长度依赖性钙缓冲在塑造肌浆钙离子瞬变中的相对贡献。