首页> 美国卫生研究院文献>Biochemical Journal >Myofibrillar protein turnover. Synthesis rates of myofibrillar and sarcoplasmic protein fractions in different muscles and the changes observed during postnatal development and in response to feeding and starvation.
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Myofibrillar protein turnover. Synthesis rates of myofibrillar and sarcoplasmic protein fractions in different muscles and the changes observed during postnatal development and in response to feeding and starvation.

机译:肌原纤维蛋白更新。不同肌肉中肌原纤维和肌浆蛋白组分的合成速率以及产后发育过程中以及对摄食和饥饿反应的变化。

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摘要

Measurement of rates of synthesis of skeletal-muscle proteins in adult rats shows that the faster overall rate of turnover in diaphragm and soleus muscles compared with several other, more glycolytic, muscles is also exhibited by the myofibrillar proteins, since the ratio of sarcoplasmic to myofibrillar protein synthesis is similar for all muscles. Further, throughout postnatal development, when the overall turnover rate falls with age, parallel changes occur for the myofibrillar proteins, as indicated by a constant ratio of sarcoplasmic to myofibrillar protein synthesis (2.06) in the steady state after overnight starvation. Only in the youngest (4 weeks old) rats is a slightly lower ratio observed (1.72). These results indicate that, when changes in the overall turnover rate of muscle proteins occur, the relative turnover of the two major protein fractions stays constant. However, measurements in the non-steady state during growth and after starvation for 4 days show that the relative synthesis rates of the two fractions change as a result of a disproportionate increase in myofibrillar protein synthesis during growth and decrease during starvation. Thus the synthesis rate of the slower-turning-over myofibrillar protein fraction is more sensitive to nutritional state than is that of the sarcoplasmic protein. It is suggested that such responses may help to maintain constant tissue composition during non-steady-state conditions of growth and atrophy.
机译:对成年大鼠骨骼肌蛋白合成速率的测量结果表明,与肌纤颤蛋白相比,diaphragm肌和比目鱼肌的总周转速率也比其他几条具有更高糖酵解性的肌肉更快,因为肌浆蛋白与肌原纤维的比率所有肌肉的蛋白质合成都是相似的。此外,在整个产后发育中,当总周转率随着年龄的增长而下降时,肌原纤维蛋白会发生平行变化,如过夜饥饿后稳态的肌浆蛋白与肌原纤维蛋白合成的恒定比率(2.06)所表明的。仅在最小的(4周龄)大鼠中观察到该比率稍低(1.72)。这些结果表明,当肌肉蛋白质的总周转率发生变化时,两个主要蛋白质部分的相对周转保持恒定。然而,在生长过程中和饥饿4天后的非稳态测量表明,这两个部分的相对合成速率由于生长过程中肌原纤维蛋白合成的不成比例增加和饥饿过程中的减少而改变。因此,转换较慢的肌原纤维蛋白级分的合成速率比肌浆蛋白的合成速率对营养状态更为敏感。提示这种反应可能有助于在生长和萎缩的非稳态条件下维持恒定的组织组成。

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