Fabiato A
Am J Physiol. 1983 Jul;245(1):C1-14. doi: 10.1152/ajpcell.1983.245.1.C1.
The hypothesis of a Ca2+-induced Ca2+ release (CICR) from the sarcoplasmic reticulum (SR) is supported by experiments done in skinned cardiac cells (sarcolemma removed by microdissection). According to this hypothesis, the transsarcolemmal Ca2+ influx does not activate the myofilaments directly but through the induction of a Ca2+ release from the SR. The stimulus gating CICR is not a small change in free Ca2+ concentration (delta[free Ca2+]) outside the SR but a function of the rate of this change (delta[free Ca2+/delta t]). The initial relatively fast component of the transsarcolemmal Ca2+ current would trigger Ca2+ release; the subsequent slow component, perhaps corresponding to noninactivating Ca2+ channels, would load the SR with an amount of Ca2+ available for release during subsequent beats. Inactivation of CICR is caused by the large increase of [free Ca2+] outside the SR resulting from Ca2+ release, which inhibits further release. This negative feedback helps to explain that CICR is not all or none. During relaxation the Ca2+ reaccumulation in the SR is backed up by the Ca2+ efflux across the sarcolemma through Na+-Ca2+ exchange and the sarcolemmal Ca2+ pump. Computations of the Ca2+ buffering in the mammalian ventricular cell and of the systolic transsarcolemmal Ca2+ influx do not support the alternative hypothesis that this influx of Ca2+ is large enough to activate the myofilaments directly. Yet the hypothesis of a CICR can be challenged because of many problems and uncertainties related to the preparations and methods used for skinned cardiac cell experiments.
从肌浆网(SR)中进行钙诱导钙释放(CICR)的假说,得到了对剥离心肌细胞(通过显微解剖去除肌膜)所做实验的支持。根据这一假说,跨肌膜的钙内流并非直接激活肌丝,而是通过诱导肌浆网释放钙来实现。开启CICR的刺激并非肌浆网外游离钙浓度(Δ[游离钙])的微小变化,而是该变化速率(Δ[游离钙]/Δt)的函数。跨肌膜钙电流最初相对较快的成分会触发钙释放;随后较慢的成分,可能对应于非失活钙通道,会使肌浆网加载一定量的钙,以供后续搏动时释放。CICR的失活是由钙释放导致肌浆网外[游离钙]大幅增加引起的,这会抑制进一步释放。这种负反馈有助于解释CICR并非全或无现象。在舒张期,肌浆网中的钙再蓄积由通过钠钙交换和肌膜钙泵跨肌膜的钙外流来支持。对哺乳动物心室细胞中钙缓冲以及收缩期跨肌膜钙内流的计算,并不支持另一种假说,即这种钙内流大到足以直接激活肌丝。然而,由于与剥离心肌细胞实验所用的制备方法和手段相关的诸多问题及不确定性,CICR假说可能受到质疑。