骨骼肌肌浆网腺苷酸环化酶:分布、定位和调控。

M Nakagawa, J H Willner
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摘要

我们发现腺苷酸环化酶(AC)在大鼠骨骼肌肌浆网(SR)和肌膜(SL)中的特异性活性一样高(39 +/- 5 pmol/mg / min和34 +/- 5 pmol/mg / min)。由于SL污染,SR中无法检测到AC。尽管在制备轻SR时缺乏表面膜标记物,但在三联体(重SR)和纵向网状(轻SR)中SR的活性相似。此外,SR和SL的AC可能存在生物化学差异。在10(-5)M 5′-胍脲二磷酸存在下,10(-4)M异丙肾上腺素的SL活性提高508%,粗SR提高46.4%,重SR提高68.3%,轻SR仅提高24.3%。与1纳摩尔Ca++相比,0.32微摩尔Ca++的SR活性提高了50% (p < 0.05);较高浓度的Ca++非竞争性抑制活性(Ki 0.87微摩尔)。相反,Ca++单相抑制SL活性。阿拉美他星对SR囊泡的渗透性表明AC位于SR的细胞质表面;胞质钙离子的生理变化对其调控可以影响SR钙离子的通量。
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Adenylate cyclase in sarcoplasmic reticulum of skeletal muscle: distribution, orientation, and regulation.

We found specific activity of adenylate cyclase (AC) to be as high in rat skeletal muscle sarcoplasmic reticulum (SR) as in sarcolemma (SL) (39 +/- 5 pmol/mg per min and 34 +/- 5 pmol/mg per min). Detection of AC in SR could not be due to SL contamination. Activity in SR was similar in triads (heavy SR) and longitudinal reticulum (light SR), despite virtual absence of surface membrane markers in preparations of light SR. Also, AC of SR and SL may differ biochemically. In the presence of 10(-5) M 5'-guanylylimidodiphosphate, 10(-4) M isoproterenol increased SL activity 508%, crude SR 46.4%, heavy SR 68.3%, light SR only 24.3%. SR activity was 50% higher at 0.32 micromolar Ca++ than at 1 nanomolar Ca++ (p less than 0.05); higher concentrations of Ca++ noncompetively inhibited activity (Ki 0.87 micromolar). In contrast, Ca++ monophasically inhibited SL activity. Permeabilization of SR vesicles with alamethacin indicated that AC is on the cytoplasmic surface of SR; its regulation by physiological changes in cytoplasmic Ca++ could influence SR Ca++ flux.

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