Devlin R B, Emerson C P
Cell. 1978 Apr;13(4):599-611. doi: 10.1016/0092-8674(78)90211-8.
The synthesis of contractile proteins has been studied during the differentiation of quail skeletal muscle myoblasts in culture. Myoblast differentiation was synchronized by transferring secondary cultures of rapidly dividing myoblasts into medium lacking cell division-promoting factors. Cultures at various stages of differentiation were then pulse-labeled with 35S-methionine, and cell extracts were resolved by electrophoresis on two-dimensional gels. Incorporation into specific proteins was quantitated by autoradiography and fluorography using a scanning densitometer. Contractile proteins synthesized by muscle cultures were identified by their co-electrophoresis on two-dimensional gels with contracile proteins purified from quail breast muscle. Our results show that the synthesis of myosin heavy chain, two myosin light chains, two subunits of troponin and two subunits of tropomyosin is first detected at the time of myoblast fusion and then rapidly increase at least 500 fold to maximum rates which remain constant in muscle fibers. Both the kinetics of activation and the molar rates of synthesis of these contractile proteins are virtually identical. Muscle-specific actin (alpha) synthesis also increases at the time of myoblast fusion, but this actin (alpha) is synthesized at 3 times the rate of other contractile proteins. The synthesis of 30 other muscle cell proteins was quantitated, and most of these are shown to follow different patterns of regulation. From these results, we conclude that the contractile proteins are regulated coordinately during myoblast differentiation.
在培养的鹌鹑骨骼肌成肌细胞分化过程中,对收缩蛋白的合成进行了研究。通过将快速分裂的成肌细胞的传代培养物转移到缺乏促进细胞分裂因子的培养基中,使成肌细胞分化同步化。然后用35S-甲硫氨酸对处于不同分化阶段的培养物进行脉冲标记,细胞提取物通过二维凝胶电泳进行分离。使用扫描密度计通过放射自显影和荧光自显影对掺入特定蛋白质的情况进行定量。通过与从鹌鹑胸肌中纯化的收缩蛋白在二维凝胶上共电泳,鉴定肌肉培养物合成的收缩蛋白。我们的结果表明,肌球蛋白重链、两种肌球蛋白轻链、肌钙蛋白的两个亚基和原肌球蛋白的两个亚基的合成在成肌细胞融合时首次被检测到,然后迅速增加至少500倍,达到在肌纤维中保持恒定的最大速率。这些收缩蛋白的激活动力学和合成摩尔速率实际上是相同的。肌肉特异性肌动蛋白(α)的合成在成肌细胞融合时也增加,但这种肌动蛋白(α)的合成速率是其他收缩蛋白的3倍。对另外30种肌肉细胞蛋白的合成进行了定量,结果表明其中大多数遵循不同的调控模式。从这些结果中,我们得出结论,在成肌细胞分化过程中,收缩蛋白是协同调控的。