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Subcellular analysis of Ca2+ homeostasis in primary cultures of skeletal muscle myotubes.

机译:骨骼肌肌管原代培养中Ca2 +稳态的亚细胞分析。

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摘要

Specifically targeted aequorin chimeras were used for studying the dynamic changes of Ca2+ concentration in different subcellular compartments of differentiated skeletal muscle myotubes. For the cytosol, mitochondria, and nucleus, the previously described chimeric aequorins were utilized; for the sarcoplasmic reticulum (SR), a new chimera (srAEQ) was developed by fusing an aequorin mutant with low Ca2+ affinity to the resident protein calsequestrin. By using an appropriate transfection procedure, the expression of the recombinant proteins was restricted, within the culture, to the differentiated myotubes, and the correct sorting of the various chimeras was verified with immunocytochemical techniques. Single-cell analysis of cytosolic Ca2+ concentration ([Ca2+]c) with fura-2 showed that the myotubes responded, as predicted, to stimuli known to be characteristic of skeletal muscle fibers, i.e., KCl-induced depolarization, caffeine, and carbamylcholine. Using these stimuli in cultures transfected with the various aequorin chimeras, we show that: 1) the nucleoplasmic Ca2+ concentration ([Ca2+]n) closely mimics the [Ca2+]c, at rest and after stimulation, indicating a rapid equilibration of the two compartments also in this cell type; 2) on the contrary, mitochondria amplify 4-6-fold the [Ca2+]c increases; and 3) the lumenal concentration of Ca2+ within the SR ([Ca2+]sr) is much higher than in the other compartments (> 100 microM), too high to be accurately measured also with the aequorin mutant with low Ca2+ affinity. An indirect estimate of the resting value (approximately 1-2 mM) was obtained using Sr2+, a surrogate of Ca2+ which, because of the lower affinity of the photoprotein for this cation, elicits a lower rate of aequorin consumption. With Sr2+, the kinetics and amplitudes of the changes in [cation2+]sr evoked by the various stimuli could also be directly analyzed.
机译:专门针对的水母发光蛋白嵌合体用于研究分化的骨骼肌肌管的不同亚细胞区室中Ca2 +浓度的动态变化。对于胞质,线粒体和细胞核,使用了先前描述的嵌合水母发光蛋白。对于肌质网(SR),通过融合对居住蛋白calsequestrin具有低Ca2 +亲和力的水母发光蛋白突变体,开发了一种新的嵌合体(srAEQ)。通过使用适当的转染程序,重组蛋白的表达在培养物中仅限于分化的肌管,并通过免疫细胞化学技术验证了各种嵌合体的正确分类。用fura-2对胞质Ca2 +浓度([Ca2 +] c)进行单细胞分析表明,肌管如预期的那样对骨骼肌纤维特征性刺激(即KCl诱导的去极化,咖啡因和氨甲酰胆碱)作出了反应。在转染了各种水母发光蛋白嵌合体的培养物中使用这些刺激,我们显示:1)静止和刺激后,核质Ca2 +浓度([Ca2 +] n)紧密模拟[Ca2 +] c,表明两个区室快速平衡同样在这种细胞类型中; 2)相反,线粒体将[Ca2 +] c增加4-6倍; 3)SR([Ca2 +] sr)中Ca2 +的腔内浓度比其他隔室中的腔内浓度高得多(> 100 microM),太高了,以致于Ca2 +亲和力低的水母发光蛋白突变体也无法准确测量。使用Sr2 +(Ca2 +的替代物)获得了静息值(约1-2 mM)的间接估计值,由于光蛋白对该阳离子的亲和力较低,因此引起水母发光蛋白消耗的速率降低。使用Sr2 +,还可以直接分析各种刺激引起的[阳离子2+] sr变化的动力学和幅度。

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