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肌浆网的组装。大鼠骨骼肌细胞培养中三磷酸腺苷酶的生物合成。

Assembly of the sarcoplasmic reticulum. Biosynthesis of the adenosine triphosphatase in rat skeletal muscle cell culture.

作者信息

Holland P C, MacLennan D H

出版信息

J Biol Chem. 1976 Apr 10;251(7):2030-6.

PMID:131798
Abstract

Temporal patterns of biosynthesis of the Ca2+ + Mg2+-dependent adenosine triphosphatase of sarcomplasmic reticulum were obtained from studies with primary cultures of rat skeletal muscle cells. Rates of synthesis at various stages of differentiation were estimated from the incorporation of tritium-labeled leucine into the ATPase. Cells were solubilized with detergent, and newly synthesized ATPase was isolated from cells by antibody precipitation in the presence of carrier ATPase. Radioactivity incorporated into the ATPase was determined after gel electrophoresis of the precipitates and counting of gel slices containing the ATPase band. In Dulbecco's modified Eagle's medium containing 10% horse serum and 0.5% chick embryo extract, mononucleated myoblast cells began to form multinucleated myotubes after about 50 hours in culture. Prior to fusion little ATPase synthesis was detectable; during fusion the ATPase was synthesized at an accelerating rate for a period of about 30 hours. The rate of synthesis levelled off after about 90 hours coincident with termination of fusion. In Dulbecco's modified Eagle's medium containing 20% fetal calf serum and 8% embryo extract, the onset of fusion was delayed for 30 to 40 hours. In this medium biosynthesis of the ATPase was also delayed so that biosynthesis of the ATPase appeared to be correlated with fusion of muscle cells. Cells cultured in Culbecco's modified Eagle's medium containgin 10% horse serum, but only 60 muM Ca2+, proliferated but did not fuse. Under these conditions, synthesis of the ATPase was measurable at 50 to 60 hours, and the rate of synthesis accelerated until 120 hours when it declined. Under all conditions degradation of the ATPase occurred with a half-life of 20 hours whereas the half-life of total protein degradation was 40 hours. Synthesis of the sarcoplasmic reticulum ATPase, like that of a number of other muscle-specific proteins, is greatly accelerated as myoblasts fuse and differentiate into myotubes. Fusion is not essential for this phenomenon, however, although it is normally concomitant with it.

摘要

通过对大鼠骨骼肌细胞原代培养物的研究,获得了肌浆网中Ca2+ + Mg2+依赖性三磷酸腺苷酶生物合成的时间模式。从氚标记的亮氨酸掺入ATP酶的情况估计了分化各个阶段的合成速率。用去污剂使细胞溶解,在载体ATP酶存在的情况下,通过抗体沉淀从细胞中分离出新合成的ATP酶。在沉淀进行凝胶电泳并对含有ATP酶条带的凝胶切片进行计数后,测定掺入ATP酶中的放射性。在含有10%马血清和0.5%鸡胚提取物的杜尔贝科改良伊格尔培养基中,单核成肌细胞在培养约50小时后开始形成多核肌管。在融合之前几乎检测不到ATP酶的合成;在融合期间,ATP酶以加速速率合成约30小时。合成速率在约90小时后趋于平稳,与融合终止同时发生。在含有20%胎牛血清和8%胚提取物的杜尔贝科改良伊格尔培养基中,融合的开始延迟了30至40小时。在这种培养基中,ATP酶的生物合成也延迟了,因此ATP酶的生物合成似乎与肌肉细胞的融合相关。在含有10%马血清但仅含60μM Ca2+的杜尔贝科改良伊格尔培养基中培养的细胞增殖但不融合。在这些条件下,在50至60小时可检测到ATP酶的合成,合成速率加速直至120小时,之后下降。在所有条件下,ATP酶的降解以20小时的半衰期发生,而总蛋白质降解的半衰期为40小时。肌浆网ATP酶的合成,与许多其他肌肉特异性蛋白质的合成一样,在成肌细胞融合并分化为肌管时大大加速。然而,融合对于这种现象并非必不可少,尽管它通常与之相伴。

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