Song Yang, Liao Jiayu
Department of Bioengineering, Bourns College of Engineering, University of California at Riverside, Riverside, CA 92521, USA.
Mol Biosyst. 2012 Jun;8(6):1723-9. doi: 10.1039/c2mb05465e. Epub 2012 Mar 30.
Ubiquitination and SUMOylation are multi-step cascade reactions, in which small protein modifiers are activated by E1 activating enzyme, transferred to E2 conjugating enzyme, and conjugated to substrates mediated by the E3 ligase in vivo. The structural and biochemical bases for the cascade reactions have been elucidated by several studies. However, the reaction intermediates and dynamics of these peptide modifiers among the enzymes have not been completely elucidated. Here we report detailed investigations of SUMOylation dynamics and interaction switches of SUMO1 among its ligases using FRET technology. These studies show that, while SUMO1 and the E1 subunit Aos1 or Uba2 have no intrinsic affinity for each other, the adenylation of SUMO1 carried out by Aos1 requires the presence of Uba2, and subsequently conformational changes trigger the interaction of SUMO1 and Uba2 for a thioester bond formation. The reaction intermediates among SUMO1 and its ligases are indirectly revealed by FRET signals generated by each pair. Furthermore, the transfer of SUMO1 from Uba2 to E2 enzyme, Ubc9, depends on the formation of a thioester bond between SUMO1 and Ubc9, and requires non-covalent interaction between Ubc9 and Uba2, but not between Ubc9 and SUMO1. These interaction switches provide the physical and biochemical bases for the SUMO activation and a transfer cascade required for SUMO activation.
泛素化和类泛素化修饰是多步级联反应,在体内,小蛋白修饰剂首先被E1激活酶激活,然后转移至E2缀合酶,最后在E3连接酶的介导下与底物缀合。多项研究已阐明了这些级联反应的结构和生化基础。然而,这些肽修饰剂在酶之间的反应中间体和动力学尚未完全阐明。在此,我们报告了利用荧光共振能量转移(FRET)技术对类泛素化修饰动力学以及SUMO1在其连接酶之间的相互作用转换进行的详细研究。这些研究表明,虽然SUMO1与E1亚基Aos1或Uba2之间没有内在亲和力,但Aos1对SUMO1的腺苷酸化需要Uba2的存在,随后的构象变化会触发SUMO1与Uba2相互作用以形成硫酯键。SUMO1与其连接酶之间的反应中间体通过每对产生的FRET信号间接揭示。此外,SUMO1从Uba2转移至E2酶Ubc9,取决于SUMO1与Ubc9之间硫酯键的形成,并且需要Ubc9与Uba2之间的非共价相互作用,而非Ubc9与SUMO1之间的相互作用。这些相互作用转换为类泛素激活以及类泛素激活所需的转移级联反应提供了物理和生化基础。