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通过定量荧光共振能量转移技术测定SUMO1和ATP对SUMO E1的亲和力。

Determination of SUMO1 and ATP affinity for the SUMO E1by quantitative FRET technology.

作者信息

Wiryawan Hilda, Dan Kevin, Etuale Myra, Shen Yali, Liao Jiayu

机构信息

Division of Biomedical Science, School of Medicine, University of California at Riverside, 900 University Avenue, Riverside, California, 92521.

出版信息

Biotechnol Bioeng. 2015 Apr;112(4):652-8. doi: 10.1002/bit.25480. Epub 2015 Jan 16.

Abstract

SUMOylation plays important roles in many key physiological and pathological processes. The SUMOylation cascade involves a heterodimer of activating enzyme, E1 (Aos1/Uba2); a conjugating enzyme, E2 (Ubc9); and many ligase enzymes, E3. Focusing on the activation step of the SUMOylation process, we examined the interaction of E1 with its substrates. Previous studies reported the Km of E1 enzymes in ubiquitin and other ubiquitin-like pathways, but the Km of the SUMO paralogs (SUMO2 and SUMO3) is unknown. Here, by using quantitative FRET to measure the SUMO E1 enzyme kinetics of SUMO1, 2, and 3 and ATP under steady state conditions, we found that the enzyme kinetics from the quantitative FRET method are comparable to those from conventional radioactive assays. Additionally, the kinetic constants, Km , of SUMO2 (3.418 ± 0.9131 μM) and SUMO3 (2.764 ± 0.75 μM) [FW1] are approximately four to five times higher than that of SUMO1 Km (0.7458 ± 0.1105 μM). These results demonstrate the advantages of FRET technology for determining Km , including the ability to monitor reaction progress in real-time with high-throughput and high-sensitivity in an environmentally friendly manner. The processes discussed here extend the utility of quantitative FRET in characterizing protein-protein interactions and enzyme kinetics.

摘要

SUMO化修饰在许多关键的生理和病理过程中发挥着重要作用。SUMO化修饰级联反应涉及激活酶E1(Aos1/Uba2)的异二聚体、缀合酶E2(Ubc9)以及许多连接酶E3。聚焦于SUMO化修饰过程的激活步骤,我们研究了E1与其底物的相互作用。先前的研究报道了泛素和其他类泛素途径中E1酶的米氏常数(Km),但SUMO旁系同源物(SUMO2和SUMO3)的Km尚不清楚。在此,通过使用定量荧光共振能量转移(FRET)在稳态条件下测量SUMO1、2和3以及ATP的SUMO E1酶动力学,我们发现定量FRET方法得到的酶动力学与传统放射性测定法的结果相当。此外,SUMO2(3.418±0.9131μM)和SUMO3(2.764±0.75μM)[FW1]的动力学常数Km大约是SUMO1 Km(0.7458±0.1105μM)的四到五倍。这些结果证明了FRET技术在确定Km方面的优势,包括能够以高通量、高灵敏度且环保的方式实时监测反应进程。这里讨论的过程扩展了定量FRET在表征蛋白质-蛋白质相互作用和酶动力学方面的应用。

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