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秋水仙碱对心脏蛋白水解的抑制作用。对蛋白质亚类降解的选择性影响。

Inhibition of cardiac proteolysis by colchicine. Selective effects on degradation of protein subclasses.

作者信息

Crie J S, Ord J M, Wakeland J R, Wildenthal K

出版信息

Biochem J. 1983 Jan 15;210(1):63-71. doi: 10.1042/bj2100063.

Abstract
  1. The effect of colchicine (2.5 microM) on cardiac protein turnover was tested with foetal mouse hearts in organ culture. 2. Colchicine had no effect on protein synthesis, but inhibited total protein degradation by 12-18%. Lumicolchicine, which lacks colchicine's ability to disaggregate microtubules, but shares its non-specific effects, did not alter protein degradation. 3. The colchicine-induced inhibition of protein degradation was accompanied by significant changes in cardiac lysosomal enzyme activities and distribution. 4. Colchicine inhibited the degradation of organellar proteins, including mitochondrial cytochromes, more than that of cytosolic proteins. 5. Colchicine decreased the rate of myosin degradation and the rate of proteolysis of the total protein pool to a similar extent. Since the regulation of myosin degradation does not involve lysosomes, this suggests that colchicine affects non-lysosomal as well as lysosomal pathways. 6. Release of branched-chain amino acids from colchicine-treated hearts was disproportionately decreased, suggesting that colchicine increased their metabolism. 7. It is concluded that colchicine, via its actions on microtubules, exerts important inhibitory effects on cardiac proteolysis. Colchicine is especially inhibitory to the degradation of organellar proteins, including mitochondrial cytochromes. Its inhibitory effects may be mediated in part via lysosomal mechanisms, but non-lysosomal mechanisms are probably involved as well.
摘要
  1. 在器官培养中,用胎鼠心脏测试了秋水仙碱(2.5微摩尔)对心脏蛋白质周转的影响。2. 秋水仙碱对蛋白质合成没有影响,但可使总蛋白质降解抑制12% - 18%。去甲秋水仙碱缺乏秋水仙碱解聚微管的能力,但具有其非特异性作用,它不会改变蛋白质降解。3. 秋水仙碱诱导的蛋白质降解抑制伴随着心脏溶酶体酶活性和分布的显著变化。4. 秋水仙碱对包括线粒体细胞色素在内的细胞器蛋白质降解的抑制作用比对胞质蛋白质的抑制作用更强。5. 秋水仙碱使肌球蛋白降解速率和总蛋白质池的蛋白水解速率降低到相似程度。由于肌球蛋白降解的调节不涉及溶酶体,这表明秋水仙碱影响非溶酶体途径以及溶酶体途径。6. 秋水仙碱处理的心脏中支链氨基酸的释放不成比例地减少,表明秋水仙碱增加了它们的代谢。7. 得出的结论是,秋水仙碱通过其对微管的作用,对心脏蛋白水解发挥重要的抑制作用。秋水仙碱对包括线粒体细胞色素在内的细胞器蛋白质的降解具有特别的抑制作用。其抑制作用可能部分通过溶酶体机制介导,但也可能涉及非溶酶体机制。

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