Lois Luisa Maria, Lima Christopher D
Structural Biology Program, Sloan-Kettering Institute, New York, NY 10021, USA.
EMBO J. 2005 Feb 9;24(3):439-51. doi: 10.1038/sj.emboj.7600552. Epub 2005 Jan 20.
E1 enzymes facilitate conjugation of ubiquitin and ubiquitin-like proteins through adenylation, thioester transfer within E1, and thioester transfer from E1 to E2 conjugating proteins. Structures of human heterodimeric Sae1/Sae2-Mg.ATP and Sae1/Sae2-SUMO-1-Mg.ATP complexes were determined at 2.2 and 2.75 A resolution, respectively. Despite the presence of Mg.ATP, the Sae1/Sae2-SUMO-1-Mg.ATP structure reveals a substrate complex insomuch as the SUMO C-terminus remains unmodified within the adenylation site and 35 A from the catalytic cysteine, suggesting that additional changes within the adenylation site may be required to facilitate chemistry prior to adenylation and thioester transfer. A mechanism for E2 recruitment to E1 is suggested by biochemical and genetic data, each of which supports a direct role for the E1 C-terminal ubiquitin-like domain for E2 recruitment during conjugation.
E1酶通过腺苷酸化、E1内部的硫酯转移以及从E1到E2缀合蛋白的硫酯转移来促进泛素和类泛素蛋白的缀合。人源异源二聚体Sae1/Sae2-Mg.ATP和Sae1/Sae2-SUMO-1-Mg.ATP复合物的结构分别在2.2埃和2.75埃分辨率下测定。尽管存在Mg.ATP,但Sae1/Sae2-SUMO-1-Mg.ATP结构显示出一种底物复合物,因为SUMO的C末端在腺苷酸化位点内未被修饰,且距离催化半胱氨酸35埃,这表明在腺苷酸化和硫酯转移之前,可能需要腺苷酸化位点内的其他变化来促进化学反应。生化和遗传数据提示了一种E2招募到E1的机制,其中每一项数据都支持E1 C末端类泛素结构域在缀合过程中对E2招募起直接作用。