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骨骼肌和肝脏含有一种可溶性的、依赖三磷酸腺苷(ATP)和泛素的蛋白水解系统。

Skeletal muscle and liver contain a soluble ATP + ubiquitin-dependent proteolytic system.

作者信息

Fagan J M, Waxman L, Goldberg A L

出版信息

Biochem J. 1987 Apr 15;243(2):335-43. doi: 10.1042/bj2430335.

Abstract

Although protein breakdown in most cells seems to require metabolic energy, it has only been possible to establish a soluble ATP-dependent proteolytic system in extracts of reticulocytes and erythroleukemia cells. We have now succeeded in demonstrating in soluble extracts and more purified preparations from rabbit skeletal muscle a 12-fold stimulation by ATP of breakdown of endogenous proteins and a 6-fold stimulation of 125I-lysozyme degradation. However, it has still not been possible to demonstrate such large effects of ATP in similar preparations from liver. Nevertheless, after fractionation by DEAE-chromatography and gel filtration, we found that extracts from liver as well as muscle contain both the enzymes which conjugate ubiquitin to 125I-lysozyme and an enzyme which specifically degrades the ubiquitin-protein conjugates. When this proteolytic activity was recombined with the conjugating enzymes, ATP + ubiquitin-dependent degradation of many proteins was observed. This proteinase is unusually large, approx. 1500 kDa, requires ATP hydrolysis for activity and resembles the ubiquitin-protein-conjugate degrading activity isolated from reticulocytes. Thus the ATP + ubiquitin-dependent pathway is likely to be present in all mammalian cells, although certain tissues may contain inhibitory factors.

摘要

虽然大多数细胞中的蛋白质分解似乎需要代谢能量,但目前仅在网织红细胞和红白血病细胞提取物中建立了一种可溶性的依赖ATP的蛋白水解系统。我们现在已经成功地在兔骨骼肌的可溶性提取物和更纯的制剂中证明,ATP能使内源性蛋白质的分解受到12倍的刺激,使125I-溶菌酶的降解受到6倍的刺激。然而,在肝脏的类似制剂中仍无法证明ATP有如此大的作用。尽管如此,通过DEAE-色谱法和凝胶过滤分级分离后,我们发现肝脏和肌肉的提取物中既含有将泛素与125I-溶菌酶结合的酶,也含有一种能特异性降解泛素-蛋白质结合物的酶。当这种蛋白水解活性与结合酶重新组合时,观察到许多蛋白质依赖ATP+泛素的降解。这种蛋白酶异常大,约为1500 kDa,其活性需要ATP水解,并且类似于从网织红细胞中分离出的泛素-蛋白质结合物降解活性。因此,依赖ATP+泛素的途径可能存在于所有哺乳动物细胞中,尽管某些组织可能含有抑制因子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7adc/1147859/007266542f69/biochemj00257-0035-a.jpg

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