Jung C, Zima A V, Szentesi P, Jona I, Blatter L A, Niggli E
Department of Physiology, University of Bern, Buehlplatz 5, 3012 Bern, Switzerland.
Cell Calcium. 2007 Feb;41(2):187-94. doi: 10.1016/j.ceca.2006.06.009. Epub 2006 Aug 22.
The Ca2+ content of the sarcoplasmic reticulum (SR) of cardiac myocytes is thought to play a role in the regulation and termination of SR Ca2+ release through the ryanodine receptors (RyRs). Experimentally altering the amount of Ca2+ within the SR with the membrane-permeant low affinity Ca2+ chelator TPEN could improve our understanding of the mechanism(s) by which SR Ca2+ content and SR Ca2+ depletion can influence Ca2+ release sensitivity and termination. We applied laser-scanning confocal microscopy to examine SR Ca2+ release in freshly isolated ventricular myocytes loaded with fluo-3, while simultaneously recording membrane currents using the whole-cell patch-clamp technique. Following application of TPEN, local spontaneous Ca2+ releases increased in frequency and developed into cell-wide Ca2+ waves. SR Ca2+ load after TPEN application was found to be reduced to about 60% of control. Isolated cardiac RyRs reconstituted into lipid bilayers exhibited a two-fold increase of their open probability. At the low concentration used (20-40microTPEN did not significantly inhibit the SR-Ca2+-ATPase in SR vesicles. These results indicate that TPEN, traditionally used as a low affinity Ca2+ chelator in intracellular Ca2+ stores, may also act directly on the RyRs inducing an increase in their open probability. This in turn results in an increased Ca2+ leak from the SR leading to its Ca2+ depletion. Lowering of SR Ca2+ content may be a mechanism underlying the recently reported cardioprotective and antiarrhythmic features of TPEN.
心肌细胞肌浆网(SR)中的Ca2+含量被认为在通过雷诺丁受体(RyRs)调节和终止SR Ca2+释放中起作用。用膜通透性低亲和力Ca2+螯合剂TPEN实验性改变SR内的Ca2+量,可能会增进我们对SR Ca2+含量和SR Ca2+耗竭影响Ca2+释放敏感性和终止的机制的理解。我们应用激光扫描共聚焦显微镜检查加载了fluo-3的新鲜分离心室肌细胞中的SR Ca2+释放,同时使用全细胞膜片钳技术记录膜电流。应用TPEN后,局部自发Ca2+释放频率增加并发展为全细胞Ca2+波。发现应用TPEN后的SR Ca2+负荷降低至对照的约60%。重构到脂质双层中的分离的心脏RyRs其开放概率增加了两倍。在所使用的低浓度(20 - 40微摩尔)下,TPEN没有显著抑制SR囊泡中的SR - Ca2+ - ATP酶。这些结果表明,传统上用作细胞内Ca2+储存低亲和力Ca2+螯合剂的TPEN,也可能直接作用于RyRs,导致其开放概率增加。这进而导致SR的Ca2+泄漏增加,导致其Ca2+耗竭。降低SR Ca2+含量可能是TPEN最近报道的心脏保护和抗心律失常特性的潜在机制。