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向青蛙骨骼肌纤维中微量注射强效钙缓冲剂会抑制去极化过程中钙释放的峰值。

Microinjection of strong calcium buffers suppresses the peak of calcium release during depolarization in frog skeletal muscle fibers.

作者信息

Csernoch L, Jacquemond V, Schneider M F

机构信息

Department of Biological Chemistry, University of Maryland, School of Medicine, Baltimore 21201.

出版信息

J Gen Physiol. 1993 Feb;101(2):297-333. doi: 10.1085/jgp.101.2.297.

Abstract

The effects of high intracellular concentrations of various calcium buffers on the myoplasmic calcium transient and on the rate of release of calcium (Rrel) from the sarcoplasmic reticulum (SR) were studied in voltage-clamped frog skeletal muscle fibers. The changes in intracellular calcium concentration (delta[Ca2+]) for 200-ms pulses to 0-20 mV were recorded before and after the injection of the calcium buffer and the underlying Rrel was calculated. If the buffer concentration after the injection was high, the initial rate of rise of the calcium transient was slower after injection than before and was followed by a slow increase of [Ca2+] that resembled a ramp. The increase in myoplasmic [Mg2+] that accompanies the calcium transient in control was suppressed after the injection and a slight decrease was observed instead. After the injection the buffer concentration in the voltage-clamped segment of the fiber decreased as the buffer diffused away toward the open ends. The calculated apparent diffusion coefficient for fura-2 (Dapp = 0.40 +/- 0.03 x 10(-6) cm2/s, mean +/- SEM, n = 6) suggests that approximately 65-70% of the indicator was bound to relatively immobile intracellular constituents. As the concentration of the injected buffer decreased, the above effects were reversed. The changes in delta[Ca2+] were underlined by characteristic modification of Rrel. The early peak component was suppressed or completely eliminated; thus, Rrel rose monotonically to a maintained steady level if corrected for depletion. If Rrel was expressed as percentage of SR calcium content, the steady level after injection did not differ significantly from that before. Control injections of anisidine, to the concentration that eliminated the peak of Rrel when high affinity buffers were used, had only a minor effect on Rrel, the peak was suppressed by 26 +/- 5% (mean +/- SE, n = 6), and the steady level remained unchanged. Thus, the peak component of Rrel is dependent on a rise in myoplasmic [Ca2+], consistent with calcium-induced calcium release, whereas the steady component of Rrel is independent of myoplasmic [Ca2+].

摘要

在电压钳制的青蛙骨骼肌纤维中,研究了细胞内高浓度的各种钙缓冲剂对肌质钙瞬变以及肌浆网(SR)钙释放速率(Rrel)的影响。在注射钙缓冲剂前后,记录了200毫秒脉冲至0 - 20毫伏时细胞内钙浓度(δ[Ca2+])的变化,并计算了潜在的Rrel。如果注射后缓冲剂浓度较高,注射后钙瞬变的初始上升速率比注射前慢,随后[Ca2+]缓慢增加,类似于斜坡。注射后,对照中伴随钙瞬变的肌质[Mg2+]增加受到抑制,反而观察到轻微下降。注射后,随着缓冲剂向开放端扩散,纤维电压钳制段中的缓冲剂浓度降低。计算得出的fura - 2表观扩散系数(Dapp = 0.40 +/- 0.03 x 10(-6) cm2/s,平均值 +/- 标准误,n = 6)表明,约65 - 70%的指示剂与相对固定的细胞内成分结合。随着注射缓冲剂浓度降低,上述影响被逆转。δ[Ca2+]的变化以Rrel的特征性改变为突出表现。早期峰值成分受到抑制或完全消除;因此,如果校正耗尽情况,Rrel单调上升至维持的稳定水平。如果将Rrel表示为SR钙含量的百分比,注射后的稳定水平与注射前无显著差异。对照注射茴香胺至使用高亲和力缓冲剂时消除Rrel峰值的浓度,对Rrel只有轻微影响,峰值被抑制26 +/- 5%(平均值 +/- 标准误,n = 6),稳定水平保持不变。因此,Rrel的峰值成分依赖于肌质[Ca2+]的升高,这与钙诱导的钙释放一致,而Rrel的稳定成分与肌质[Ca2+]无关。

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