Zhang Joe Z, Waddell Helen M M, Jones Peter P
Department of Physiology and HeartOtago, Otago School of Medical Sciences, University of Otago, Dunedin, New Zealand.
Clin Exp Pharmacol Physiol. 2015 Jun;42(6):720-6. doi: 10.1111/1440-1681.12364.
Ca(2+) is arguably the most important ion involved in the contraction of the heart. The cardiac ryanodine receptor (RyR2), the major Ca(2+) release channel located in the sarcoplasmic reticulum (SR) membrane, is responsible for releasing the bulk of Ca(2+) required for contraction. Moreover, RyR2 is also crucial for maintaining SR Ca(2+) homeostasis by releasing Ca(2+) from the SR when it becomes overloaded with Ca(2+) . During normal contraction, RyR2 is activated by cytosolic Ca(2+) , whereas during store overload conditions, the opening of RyR2 is governed by SR Ca(2+) . Although the process of the cytosolic control of RyR2 is well established, the molecular mechanism by which SR luminal Ca(2+) regulates RyR2 has only recently been elucidated and remains controversial. In addition to the activation of RyR2, SR luminal Ca(2+) also determines when the RyR2 channel closes. RyR2-mediated Ca(2+) release from the SR does not continue until the SR is completely depleted. Rather, it ceases when SR luminal Ca(2+) falls below a certain level. Given the importance of SR Ca(2+) , it is not surprising that the SR luminal Ca(2+) level is tightly controlled by SR Ca(2+) -buffering proteins. Consequently, the opening and closing of RyR2 is heavily influenced by the presence of such proteins, particularly those associated with RyR2, such as calsequestrin and the histidine-rich Ca(2+) -binding protein. These proteins appear to indirectly alter RyR2 activity by modifying the microdomain SR Ca(2+) level surrounding RyR2.
钙离子可以说是参与心脏收缩的最重要离子。心肌兰尼碱受体(RyR2)是位于肌浆网(SR)膜上的主要钙离子释放通道,负责释放收缩所需的大部分钙离子。此外,当SR中钙离子过载时,RyR2通过从SR释放钙离子,对于维持SR钙离子稳态也至关重要。在正常收缩过程中,RyR2由胞质钙离子激活,而在储存过载情况下,RyR2的开放由SR钙离子控制。尽管对RyR2的胞质控制过程已充分了解,但SR腔隙钙离子调节RyR2的分子机制直到最近才得以阐明,且仍存在争议。除了激活RyR2外,SR腔隙钙离子还决定RyR2通道何时关闭。RyR2介导的钙离子从SR释放直到SR完全耗尽才会持续。相反,当SR腔隙钙离子降至一定水平时,释放就会停止。鉴于SR钙离子的重要性,SR腔隙钙离子水平由SR钙离子缓冲蛋白严格控制也就不足为奇了。因此,RyR2的开放和关闭受到此类蛋白的显著影响,尤其是那些与RyR2相关的蛋白,如肌集钙蛋白和富含组氨酸的钙离子结合蛋白。这些蛋白似乎通过改变RyR2周围微区的SR钙离子水平间接改变RyR2的活性。