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营养转变对小鼠肝脏中异常蛋白质降解的影响。肝脏快速生长期间降解减少。

Effect of a nutritional shift on the degradation of abnormal proteins in the mouse liver. Decreased degradation during rapid liver growth.

作者信息

Amils R, Conde R D, Scornik O A

出版信息

Biochem J. 1977 May 15;164(2):363-9. doi: 10.1042/bj1640363.

Abstract
  1. The intravenous injection of puromycin to mice 0.5 min after administration of radioactive leucine resulted in the release of labelled ribosome-bound nascent protein chains with the next 0.5 min. 2. During the subsequent 13 min, 40% of the liver protein radioactivity disappeared. The rate of this process was already maximal 0.5 min after the injection of puromycin, with no apparent lag. 3. Evidence is presented that this phenomenon represents the selective degradation of puromycinyl-peptides: (a) the magnitude of this fraction corresponded to the calculated proportion of protein radioactivity in nascent chains at the time of the puromycin effect; (b) the size distribution of the proteins disappearing between 2 and 14 min was smaller than that of those retained at 14 min; and (c) when the injection of puromycin was delayed for 5 min, or when the leucine pulse was interrupted by the injection of cycloheximide (rather than puromycin), the fraction disappearing within 14 min was much smaller. 4. The degradation of puromycinyl-peptides was much slower in the rapidly growing livers of animals recovering from a protein depletion than in the protein-depleted controls. It is concluded that the large decrease in the overall rates of total liver protein degradation previously described during liver growth is a general phenomenon, also affecting the rate of scavenging of abnormal proteins.
摘要
  1. 在给小鼠注射放射性亮氨酸0.5分钟后静脉注射嘌呤霉素,在接下来的0.5分钟内会导致标记的核糖体结合新生蛋白链的释放。2. 在随后的13分钟内,肝脏蛋白质放射性的40%消失。注射嘌呤霉素后0.5分钟,这个过程的速率已经达到最大值,没有明显的延迟。3. 有证据表明这种现象代表嘌呤霉素基肽的选择性降解:(a) 这一部分的大小与嘌呤霉素作用时新生链中蛋白质放射性的计算比例相对应;(b) 在2至14分钟内消失的蛋白质的大小分布比在14分钟时保留的蛋白质的大小分布要小;(c) 当嘌呤霉素的注射延迟5分钟,或者当亮氨酸脉冲被环己酰亚胺(而不是嘌呤霉素)的注射中断时,在14分钟内消失的部分要小得多。4. 在从蛋白质缺乏状态恢复的动物的快速生长的肝脏中,嘌呤霉素基肽的降解比蛋白质缺乏的对照组要慢得多。得出的结论是,先前描述的肝脏生长过程中肝脏总蛋白降解总体速率的大幅下降是一种普遍现象,也影响异常蛋白质的清除速率。

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