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Mechanisms of cardiac hypertrophy in canine volume overload.

机译:犬体积超负荷时心脏肥大的机制。

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摘要

This study tested whether the modest hypertrophy that develops in dogs in response to mitral regurgitation is due to a relatively small change in the rate of protein synthesis or, alternatively, is due to a decreased rate of protein degradation. After 3 mo of severe experimental mitral regurgitation, the left ventricular (LV) mass-to-body weight ratio increased by 23% compared with baseline values. This increase in LV mass occurred with a small, but not statistically significant, increase in the fractional rate of myosin heavy chain (MHC) synthesis (Ks), as measured using continuous infusion with [3H]leucine in dogs at 2 wk, 4 wk, and 3 mo after creation of severe mitral regurgitation. Translational efficiency was unaffected by mitral regurgitation as measured by the distribution of MHC mRNA in polysome gradients. Furthermore, there was no detectable increase in translational capacity as measured by either total RNA content or the rate of ribosome formation. These data indicate that translational mechanisms that accelerate the rate of cardiac protein synthesis are not responsive to the stimulus of mitral regurgitation. Most of the growth after mitral regurgitation was accounted for by a decrease in the fractional rate of protein degradation, calculated by subtracting fractional rates of protein accumulation at each time point from the corresponding Ks values. We conclude that 1) volume overload produced by severe mitral regurgitation does not trigger substantial increases in the rate of protein synthesis and 2) the modest increase in LV mass results primarily from a decrease in the rate of protein degradation.
机译:这项研究测试了犬响应二尖瓣关闭不全而出现的适度肥大是由于蛋白质合成速率的相对较小变化,还是由于蛋白质降解速率降低。严重的实验性二尖瓣反流3个月后,左心室(LV)体重比与基线值相比增加了23%。左室重量的这种增加发生在肌球蛋白重链(MHC)合成分数(Ks)的分数增加很小但无统计学意义上,这是通过在2 wk,4 wk连续注入狗中[3H]亮氨酸来测量的,以及发生严重的二尖瓣关闭不全后3个月。翻译效率不受二尖瓣反流的影响,如通过MHC mRNA在多核糖体梯度中的分布所测量的。此外,通过总RNA含量或核糖体形成速率测得的翻译能力没有可检测的增加。这些数据表明加速心脏蛋白质合成速率的翻译机制对二尖瓣关闭不全的刺激没有反应。二尖瓣反流后的大部分生长是由蛋白质降解率的降低引起的,蛋白质降解率的降低是通过从相应的Ks值中减去每个时间点的蛋白质积累率来实现的。我们得出的结论是:1)由严重的二尖瓣反流引起的容量超负荷不会触发蛋白质合成速率的实质性增加,以及2)LV量的适度增加主要是由于蛋白质降解速率的降低。

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