School of Biomedical Sciences, University of Queensland, Queensland, Australia.
J Gen Physiol. 2022 Sep 5;154(9). doi: 10.1085/jgp.202112994. Epub 2022 Mar 21.
Cycling of Ca2+ between the sarcoplasmic reticulum (SR) and myoplasm is an important component of skeletal muscle resting metabolism. As part of this cycle, Ca2+ leaks from the SR into the myoplasm and is pumped back into the SR using ATP, which leads to the consumption of O2 and generation of heat. Ca2+ may leak through release channels or ryanodine receptors (RYRs). RYR Ca2+ leak can be monitored in a skinned fiber preparation in which leaked Ca2+ is pumped into the t-system and measured with a fluorescent dye. However, accurate quantification faces a number of hurdles. To overcome them, we developed a mathematical model of Ca2+ movement in these preparations. The model incorporated Ca2+ pumps that move Ca2+ from the myoplasm to the SR and from the junctional space (JS) to the t-system, Ca2+ buffering by EGTA in the JS and myoplasm and by buffers in the SR, and Ca2+ leaks from the SR into the JS and myoplasm and from the t-system into the myoplasm. The model accurately simulated Ca2+ uptake into the t-system, the relationship between myoplasmic [Ca2+] and steady-state t-system [Ca2+], and the effect of blocking RYR Ca2+ leak on t-system Ca2+ uptake. The magnitude of the leak through the RYRs would contribute ∼5% of the resting heat production of human muscle. In normal resting fibers, RYR Ca2+ leak makes a small contribution to resting metabolism. RYR-focused pathologies have the potential to increase RYR Ca2+ leak and the RYR leak component of resting metabolism.
钙离子在肌浆网(SR)和肌浆之间的循环是骨骼肌静息代谢的一个重要组成部分。作为这个循环的一部分,钙离子从 SR 渗漏到肌浆中,并利用 ATP 将其泵回 SR,这导致 O2 的消耗和热量的产生。钙离子可能通过释放通道或兰尼碱受体(RYRs)渗漏。在一种去垢纤维制剂中可以监测 RYR 钙离子渗漏,在这种制剂中,渗漏的钙离子被泵入 T 系统,并通过荧光染料进行测量。然而,准确的定量面临着许多障碍。为了克服这些障碍,我们开发了一种这些制剂中钙离子运动的数学模型。该模型纳入了将钙离子从肌浆转移到 SR 以及从连接间隙(JS)转移到 T 系统的钙离子泵,JS 和肌浆中的 EGTA 以及 SR 中的缓冲液对钙离子的缓冲作用,以及 SR 中的钙离子从 SR 渗漏到 JS 和肌浆中,以及从 T 系统渗漏到肌浆中。该模型准确地模拟了 T 系统对钙离子的摄取、肌浆中[Ca2+]与稳态 T 系统中[Ca2+]的关系,以及阻断 RYR 钙离子渗漏对 T 系统钙离子摄取的影响。RYR 渗漏的幅度将贡献人类肌肉静息产热的约 5%。在正常的静息纤维中,RYR 钙离子渗漏对静息代谢的贡献很小。RYR 聚焦的病理有增加 RYR 钙离子渗漏和静息代谢中 RYR 渗漏成分的潜力。