Ciechanover A
Department of Biochemistry, Faculty of Medicine, Technion-Israel Institute of Technology, Haifa.
Brain Pathol. 1993 Jan;3(1):67-75. doi: 10.1111/j.1750-3639.1993.tb00727.x.
Ubiquitin modification of a variety of protein targets within the cell plays important roles in many cellular processes. Among these are regulation of gene expression, regulation of cell cycle and division, involvement in the cellular stress response, modification of cell surface receptors, DNA repair, and biogenesis of mitochondria and ribosomes. The best studied modification occurs in the ubiquitin-dependent proteolytic pathway. Degradation of a protein by the ubiquitin system involves two discrete steps. Initially, multiple ubiquitin molecules are covalently linked in an ATP-dependent mode to the protein substrate. The protein moiety of the conjugate is then degraded by a specific protease into free amino acids with the release of free and reutilizable ubiquitin. This process also requires energy. In addition, stable mono-ubiquitin adducts are also found intracellularly, for example, those involving nucleosomal histones. Despite the considerable progress that has been made in elucidating the mode of action and roles of the ubiquitin system, many problems remain unsolved. For example, very little is known about the cellular substrates of the system and the signals that target them for conjugation and degradation. The scope of this review is to summarize briefly what is currently known on the role of the ubiquitin system in protein turnover, and to discuss in detail the mechanisms involved in selection of substrates for conjugation and in degradation of ubiquitin-conjugated proteins.
细胞内多种蛋白质靶标的泛素修饰在许多细胞过程中发挥着重要作用。其中包括基因表达调控、细胞周期和分裂调控、参与细胞应激反应、细胞表面受体修饰、DNA修复以及线粒体和核糖体的生物合成。研究最深入的修饰发生在泛素依赖性蛋白水解途径中。泛素系统对蛋白质的降解涉及两个不同的步骤。首先,多个泛素分子以ATP依赖的方式共价连接到蛋白质底物上。然后,缀合物的蛋白质部分被一种特定的蛋白酶降解为游离氨基酸,同时释放出游离的、可再利用的泛素。这个过程也需要能量。此外,细胞内也发现了稳定的单泛素加合物,例如那些涉及核小体组蛋白的加合物。尽管在阐明泛素系统的作用方式和作用方面已经取得了相当大的进展,但许多问题仍然没有解决。例如,关于该系统的细胞底物以及将它们靶向缀合和降解的信号,我们了解得非常少。本综述的范围是简要总结目前已知的泛素系统在蛋白质周转中的作用,并详细讨论参与底物缀合选择和泛素缀合蛋白降解的机制。