Slot L A, Lauridsen A M, Hendil K B
Biochem J. 1986 Jul 15;237(2):491-8. doi: 10.1042/bj2370491.
IMR90 human fibroblasts were labelled by incubation of cells for 48 h in medium containing 10% serum and [3H]leucine. The labelled protein was degraded at a rate of 1%/h during a subsequent incubation in medium with 10% serum. Incubation in medium without serum caused a transient enhancement of the degradation of endogenous protein, which was also found in cells labelled in medium without serum. The degradation of micro-injected haemoglobin was enhanced by serum deprivation in a non-transient manner. These results suggest that enhanced degradation in serum-free medium occurs only for a subpopulation of cell proteins and that it appears transient because the major part of the pool of susceptible endogenous proteins is being degraded during the first 20-30 h in serum-free unlabelled medium. Protein turnover in various cell compartments was measured by a double-labelling technique. Most of the enhanced degradation in serum-deprived cultures (73-83%) was due to breakdown of cytosolic proteins. The enhanced degradation of cytosolic proteins seemed to affect several proteins irrespective of their molecular mass or metabolic stability.
将IMR90人成纤维细胞在含有10%血清和[3H]亮氨酸的培养基中孵育48小时进行标记。在随后含有10%血清的培养基中孵育期间,标记蛋白以1%/小时的速率降解。在无血清培养基中孵育会导致内源性蛋白降解的短暂增强,在无血清培养基中标记的细胞中也发现了这种情况。微注射血红蛋白的降解在血清剥夺时以非短暂的方式增强。这些结果表明,无血清培养基中增强的降解仅发生在细胞蛋白的一个亚群中,并且它看起来是短暂的,因为在无血清未标记培养基中的前20 - 30小时内,易感内源性蛋白池的主要部分正在被降解。通过双标记技术测量了各种细胞区室中的蛋白质周转。血清剥夺培养物中大部分增强的降解(73 - 83%)是由于胞质蛋白的分解。胞质蛋白增强的降解似乎影响了几种蛋白,而与它们的分子量或代谢稳定性无关。