Schmidtke Gunter, Aichem Annette, Groettrup Marcus
Division of Immunology, Department of Biology, University of Konstanz, D-78457 Konstanz, Germany.
Biochim Biophys Acta. 2014 Jan;1843(1):97-102. doi: 10.1016/j.bbamcr.2013.01.009. Epub 2013 Jan 18.
The Nobel prize has been awarded for the discovery of ubiquitin as a transferable signal for the degradation of proteins by the 26S proteasome. While isopeptide linkage of a protein with a single ubiquitin does not serve as a degradation signal for the proteasome, poly-ubiquitylation via several different lysine residues within ubiquitin leads to efficient proteasomal degradation. Ubiquitin-like modifiers have not been shown to directly mediate proteasomal degradation except for the cytokine inducible modifier HLA-F adjacent transcript 10 (FAT10), which consists of two ubiquitin-like domains. FAT10 ends with a free diglycine motif at its C-terminus which is required for isopeptide linkage to hundreds of different substrates. In contrast to ubiquitin, a single FAT10 suffices to bind to the 26S proteasome and to efficiently mediate proteasomal degradation in a ubiquitin-independent manner. Here we review the data on ubiquitin-independent degradation by FAT10, on how FAT10 is conjugated to its substrates, how FAT10 binds to the 26S proteasome, and how the ubiquitin-like (UBL)-ubiquitin-associated (UBA) protein NUB1L accelerates FAT10 mediated proteolysis. Finally, with a glimpse on recently identified substrates, we will discuss the currently emerging knowledge about the biological functions of FAT10. This article is part of a Special Issue entitled: Ubiquitin-Proteasome System. Guest Editors: Thomas Sommer and Dieter H. Wolf.
诺贝尔奖已授予因发现泛素作为26S蛋白酶体降解蛋白质的可转移信号的相关研究。虽然蛋白质与单个泛素的异肽键连接并非蛋白酶体的降解信号,但通过泛素内几个不同赖氨酸残基进行的多聚泛素化会导致高效的蛋白酶体降解。除细胞因子诱导的修饰物HLA-F相邻转录本10(FAT10)外,泛素样修饰物尚未被证明可直接介导蛋白酶体降解,FAT10由两个泛素样结构域组成。FAT10在其C末端以游离的双甘氨酸基序结尾,这是与数百种不同底物形成异肽键所必需的。与泛素不同,单个FAT10就足以与26S蛋白酶体结合,并以不依赖泛素的方式有效介导蛋白酶体降解。在此,我们综述了关于FAT10介导的不依赖泛素的降解、FAT10如何与底物结合、FAT10如何与26S蛋白酶体结合以及泛素样(UBL)-泛素相关(UBA)蛋白NUB1L如何加速FAT10介导的蛋白水解的数据。最后,通过简要介绍最近鉴定出的底物,我们将讨论目前关于FAT10生物学功能的新认识。本文是名为:泛素-蛋白酶体系统的特刊的一部分。客座编辑:托马斯·索默和迪特尔·H·沃尔夫。