Da Silva-Ferrada Elisa, Lopitz-Otsoa Fernando, Lang Valérie, Rodríguez Manuel S, Matthiesen Rune
Proteomics Unit, CIC bioGUNE, CIBERehd, Building 801A, Bizkaia Technology Park, 48160 Derio Bizkaia, Spain.
Biochem Res Int. 2012;2012:875148. doi: 10.1155/2012/875148. Epub 2012 Jul 1.
SUMOylation contributes to the regulation of many essential cellular factors. Diverse techniques have been used to explore the functional consequences of protein SUMOylation. Most approaches consider the identification of sequences on substrates, adaptors, or receptors regulating the SUMO conjugation, recognition, or deconjugation. The large majority of the studied SUMOylated proteins contain the sequence [IVL]KxE. SUMOylated proteins are recognized by at least 3 types of hydrophobic SUMO-interacting motifs (SIMs) that contribute to coordinate SUMO-dependent functions. Typically, SIMs are constituted by a hydrophobic core flanked by one or two clusters of negatively charged amino acid residues. Multiple SIMs can integrate SUMO binding domains (SBDs), optimizing binding, and control over SUMO-dependent processes. Here, we present a survey of the methodologies used to study SUMO-regulated functions and provide guidelines for the identification of cis and trans sequences controlling SUMOylation. Furthermore, an integrative analysis of known and putative SUMO substrates illustrates an updated landscape of several SUMO-regulated events. The strategies and analysis presented here should contribute to the understanding of SUMO-controlled functions and provide rational approach to identify biomarkers or choose possible targets for intervention in processes where SUMOylation plays a critical role.
小泛素样修饰(SUMOylation)有助于调控许多重要的细胞因子。人们运用了多种技术来探究蛋白质SUMOylation的功能后果。大多数方法侧重于鉴定底物、衔接子或受体上调节SUMO缀合、识别或去缀合的序列。绝大多数已研究的SUMO化蛋白含有[IVL]KxE序列。SUMO化蛋白可被至少3种类型的疏水性SUMO相互作用基序(SIMs)识别,这些基序有助于协调SUMO依赖的功能 。通常,SIMs由一个疏水核心组成,两侧是一簇或两簇带负电荷的氨基酸残基。多个SIMs可以整合SUMO结合结构域(SBDs),优化结合并控制SUMO依赖的过程 。在此,我们对用于研究SUMO调控功能的方法进行了综述,并为鉴定控制SUMOylation的顺式和反式序列提供了指导原则 。此外,对已知和推定的SUMO底物的综合分析展示了几个SUMO调控事件的最新概况 。本文介绍的策略和分析应有助于理解SUMO控制的功能,并为识别生物标志物或选择在SUMOylation起关键作用的过程中进行干预 的可能靶点提供合理方法。