Ulbrich B, Nierhaus K H
Eur J Biochem. 1975 Sep 1;57(1):49-54. doi: 10.1111/j.1432-1033.1975.tb02275.x.
A labelling technique in vivo has been introduced which allows the tritiation of cell components with high specific activity during growth in rich medium. By this technique the pool size of each protein can be measured directly in the supernatant from centrifugation at 150000 times g. A measurable pool was found for the proteins S1, S2, S10, L1, L4, L7, L8/9, L10, L12, L21, and L25. Experiments on migration of ribosomal proteins from the supernatant to ribosomes (i.e. association) and vice versa (dissociation) demonstrate a remarkable constancy in the composition of the ribosome. There is no significant difference between ribosomes engaged or not engaged in poly-(Phe) synthesis.
已引入一种体内标记技术,该技术可在丰富培养基中生长期间以高比活性对细胞成分进行氚标记。通过这种技术,可以直接在150000倍重力离心后的上清液中测量每种蛋白质的库大小。发现蛋白质S1、S2、S10、L1、L4、L7、L8/9、L10、L12、L21和L25存在可测量的库。关于核糖体蛋白从上清液迁移到核糖体(即缔合)以及反之亦然(解离)的实验表明,核糖体的组成具有显著的稳定性。参与或未参与聚(苯丙氨酸)合成的核糖体之间没有显著差异。