Mukhopadhyay Debaditya, Dasso Mary
Laboratory of Gene Regulation and Development, National Institute of Child Health and Development, National Institutes of Health, Building 18, Room 106, Bethesda, MD 20892, USA.
Trends Biochem Sci. 2007 Jun;32(6):286-95. doi: 10.1016/j.tibs.2007.05.002. Epub 2007 May 17.
SUMOs (small ubiquitin-like modifiers) are ubiquitin-related proteins that become covalently conjugated to cellular target proteins that are involved in a variety of processes. Frequently, this modification has a key role in regulating the activities of those targets and, thus, their cellular functions. SUMO conjugation is a highly dynamic process that can be rapidly reversed by the action of members of the Ubl (ubiquitin-like protein)-specific protease (Ulp) family. The same family of enzymes is also responsible for maturation of newly synthesized SUMOs prior to their initial conjugation. Recent advances in structural, biochemical and cell biological analysis of Ulp/SENPs reveal their high degree of specificity towards SUMO paralogs, in addition to discrimination between processing, deconjugation and chain-editing reactions. The dissimilar sub-nuclear localization patterns of Ulp/SENPs and phenotypes of Ulp/SENP mutants further indicate that different Ulp/SENPs have distinct and non-redundant roles.
小泛素样修饰蛋白(SUMO)是与泛素相关的蛋白质,它们与参与多种细胞过程的靶蛋白形成共价连接。通常,这种修饰在调节这些靶蛋白的活性以及它们的细胞功能方面起着关键作用。SUMO化是一个高度动态的过程,可通过泛素样蛋白(Ubl)特异性蛋白酶(Ulp)家族成员的作用迅速逆转。同一酶家族还负责新合成的SUMO在初始缀合之前的成熟。Ulp/SENP在结构、生化和细胞生物学分析方面的最新进展表明,它们除了能区分加工、去缀合和链编辑反应外,对SUMO旁系同源物具有高度特异性。Ulp/SENP不同的亚核定位模式以及Ulp/SENP突变体的表型进一步表明,不同的Ulp/SENP具有不同且非冗余的作用。