Martonosi A, Roufa D, Boland R, Reyes E, Tillack T W
J Biol Chem. 1977 Jan 10;252(1):318-32.
The development of sarcoplasmic reticulum membranes was studied in vivo and in tissue culture in chicken pectoralis muscle cells. The concentration of the calcium- and magnesium-activated ATPase measured by selective labeling of the enzyme with [32P]ATP in whole muscle homogenates was found to increase in developing chicken pectoralis muscle in vivo from 0.01 nmol/mg of protein in 12-day embryos to 0.3 to 0.4 nmol/mg of protein in 1-month-old chicks, where it constitutes about 3% of the total protein content of muscle. In cultured muscle cells the concentration of calcium-sensitive phosphoprotein increased from 0.015 nmol/mg of protein at 2 days to 0.04 to 0.05 nmol/mg of protein after 5 days of culture. This amount represents about 0.5% of the protein content of the muscle cells. The accumulation of Ca2+ transport ATPase began during fusion and continued with a linear rate during 8 days of culture. The density of 75 A intramembranous particles seen by freeze-etch electron microscopy on fracture faces of sarcoplasmic reticulum membranes is about 4,000/mum2 in adult chick pectoralis muscle but only 400/mum2 in cultured muscle cells in rough proportion to the concentration of Ca2+-sensitive phosphoprotein. The Ca2+, Na+, and K+ concentration of the medium and addition of ouabain, caffeine, or the calcium ionophores A23187 and X537A sharply influence the concentration of calcium transport ATPase in cultured muscle cells, parallel with their effect upon cell fusion and growth. These observations are consistent with the proposition that the gene expression leading to the accumulation of Ca2+ transport ATPase during development in culture may be regulated by intracellular ion concentrations.
在鸡胸肌细胞中,对肌浆网膜的发育进行了体内和组织培养研究。通过用[32P]ATP对全肌肉匀浆中的酶进行选择性标记来测量钙和镁激活的ATP酶的浓度,发现在体内发育的鸡胸肌中,该浓度从12日龄胚胎中的0.01 nmol/mg蛋白质增加到1月龄雏鸡中的0.3至0.4 nmol/mg蛋白质,此时它约占肌肉总蛋白质含量的3%。在培养的肌肉细胞中,钙敏感磷蛋白的浓度从培养2天时的0.015 nmol/mg蛋白质增加到培养5天后的0.04至0.05 nmol/mg蛋白质。这个量约占肌肉细胞蛋白质含量的0.5%。Ca2+转运ATP酶的积累在融合过程中开始,并在培养的8天内以线性速率持续。通过冷冻蚀刻电子显微镜在肌浆网膜断裂面上看到的75 A膜内颗粒的密度,在成年鸡胸肌中约为4000/μm2,但在培养的肌肉细胞中仅为400/μm2,与钙敏感磷蛋白的浓度大致成比例。培养基中的Ca2+、Na+和K+浓度以及哇巴因、咖啡因或钙离子载体A23187和X537A的添加对培养的肌肉细胞中钙转运ATP酶的浓度有显著影响,这与它们对细胞融合和生长的影响平行。这些观察结果与以下观点一致,即在培养发育过程中导致Ca2+转运ATP酶积累的基因表达可能受细胞内离子浓度调节。