Yoshihara Shu, Satoh Hiroshi, Saotome Masao, Katoh Hideki, Terada Hajime, Watanabe Hiroshi, Hayashi Hideharu
Division of Cardiology, Internal Medicine III, Hamamatsu University of School of Medicine, Japan.
Can J Physiol Pharmacol. 2005 Apr;83(4):357-66. doi: 10.1139/y05-020.
This study examined whether the effects of FK506-binding protein dissociation from sarcoplasmic reticulum (SR) Ca(2+) release channels on excitation-contraction (EC) coupling changed when SR Ca(2+) reuptake and (or) the trans-sarcolemmal Ca(2+) extrusion were altered. The steady-state twitch Ca(2+) transient (CaT), cell shortening, post-rest caffeine-induced CaT, and Ca(2+) sparks were measured in rat ventricular myocytes using laser-scanning confocal microscopy. In the normal condition, 50 micromol FK506/L significantly increased steady-state CaT, cell shortening, and post-rest caffeine-induced CaT. When the cells were solely perfused with thapsigargin, FK506 did not reduce any of the states, but when low Ca(2+) (0.1 mmol/L) was perfused additionally, FK506 reduced CaT and cell shortening, and accelerated the reduction of post-rest caffeine-induced CaT. FK506 significantly increased Ca(2+) spark frequency in the normal condition, whereas it mainly prolonged duration of individual Ca(2+) sparks under the combination of thapsigargin and low Ca(2+) perfusion. Modification of SR Ca(2+) release by FK506 impaired EC coupling only when released Ca(2+) could not be taken back into the SR and was readily extruded to the extracellular space. Our findings could partly explain the controversy regarding the contribution of FK506-binding protein dissociation to defective EC coupling.
本研究检测了,当肌浆网(SR)钙再摄取和(或)跨肌膜钙外排发生改变时,FK506结合蛋白从SR钙释放通道解离对兴奋-收缩(EC)偶联的影响是否改变。使用激光扫描共聚焦显微镜在大鼠心室肌细胞中测量了稳态抽搐钙瞬变(CaT)、细胞缩短、静息后咖啡因诱导的CaT和钙火花。在正常情况下,50 μmol FK506/L显著增加了稳态CaT、细胞缩短和静息后咖啡因诱导的CaT。当细胞仅用毒胡萝卜素灌注时,FK506并未降低任何一种状态,但当额外灌注低[Ca2+](0)(0.1 mmol/L)时,FK506降低了CaT和细胞缩短,并加速了静息后咖啡因诱导的CaT的降低。在正常情况下,FK506显著增加了钙火花频率,而在毒胡萝卜素和低[Ca2+](0)灌注联合作用下,它主要延长了单个钙火花的持续时间。仅当释放的Ca2+不能被重新摄取回SR并容易被挤出到细胞外空间时,FK506对SR钙释放的修饰才会损害EC偶联。我们的发现可以部分解释关于FK506结合蛋白解离对缺陷EC偶联的贡献的争议。