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再引发和激活会改变青蛙骨骼肌中定型离散钙释放事件的频率。

Repriming and activation alter the frequency of stereotyped discrete Ca2+ release events in frog skeletal muscle.

作者信息

Lacampagne A, Lederer W J, Schneider M F, Klein M G

机构信息

Department of Biochemistry and Molecular Biology, University of Maryland School of Medicine, Baltimore 21201, USA.

出版信息

J Physiol. 1996 Dec 15;497 ( Pt 3)(Pt 3):581-8. doi: 10.1113/jphysiol.1996.sp021791.

Abstract
  1. Brief localized elevations in myoplasmic [Ca2+] (Ca2+ sparks) in individual sarcomeres of voltage-clamped frog skeletal muscle fibres were examined by laser scanning confocal microscopy. 2. Fibres held at 0 mV were briefly repolarized to -90 mV (repriming pulse) to restore only a small fraction of sarcoplasmic reticulum (SR) calcium release. Subsequent depolarization to 0 mV (test pulse) caused the appearance of small numbers of Ca2+ sparks at different sarcomeres from pulse to pulse. Increasing the repriming time resulted in an increase in the frequency of occurrence of the Ca2+ sparks. 3. The amplitude and spatio-temporal extent of the Ca2+ sparks were independent of the repriming time and test pulse voltage. Ca2+ sparks recorded during small depolarizations of fibres held at -90 mV had a similar amplitude and spatio-temporal extent as those recorded after brief repriming of the same fibre held at 0 mV. 4. We conclude that stereotyped Ca2+ sparks underlie calcium release at all voltages and all extents of repriming. The amplitude of Ca2+ release is thus graded by the frequency but not by the amplitude or spatio-temporal extent of the individual SR Ca2+ release events.
摘要
  1. 运用激光扫描共聚焦显微镜,研究了电压钳制的青蛙骨骼肌纤维单个肌节中肌浆[Ca2+]的短暂局部升高(Ca2+火花)。2. 将保持在0 mV的纤维短暂复极化至-90 mV(再引发脉冲),以仅恢复一小部分肌浆网(SR)钙释放。随后去极化至0 mV(测试脉冲),每次脉冲会在不同肌节引发少量Ca2+火花。增加再引发时间会导致Ca2+火花出现频率增加。3. Ca2+火花的幅度及时空范围与再引发时间和测试脉冲电压无关。在保持于-90 mV的纤维小幅度去极化期间记录的Ca2+火花,其幅度及时空范围与保持在0 mV的同一纤维短暂再引发后记录的相似。4. 我们得出结论,刻板的Ca2+火花是所有电压及所有再引发程度下钙释放的基础。因此,Ca2+释放幅度由频率分级,而非由单个SR Ca2+释放事件的幅度或时空范围分级。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/591c/1160956/81b344e3e107/jphysiol00387-0009-a.jpg

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