Chung Tung-Liang, Hsiao He-Hsuan, Yeh Yuh-Ying, Shia Hui-Ling, Chen Yi-Ling, Liang Po-Huang, Wang Andrew H-J, Khoo Kay-Hooi, Shoei-Lung Li Steven
Department of Biotechnology, College of Life Sciences, Kaohsiung Medical University, Taiwan.
J Biol Chem. 2004 Sep 17;279(38):39653-62. doi: 10.1074/jbc.M405637200. Epub 2004 Jul 22.
Protein sumoylation by small ubiquitin-like modifier (SUMO) proteins is an important post-translational regulatory modification. A role in the control of chromosome dynamics was first suggested when SUMO was identified as high-copy suppressor of the centromere protein CENP-C mutants. CENP-C itself contains a consensus sumoylation sequence motif that partially overlaps with its DNA binding and centromere localization domain. To ascertain whether CENP-C can be sumoylated, tandem mass spectrometry (MS) based strategy was developed for high sensitivity identification and sequencing of sumoylated isopeptides present among in-gel-digested tryptic peptides of SDS-PAGE fractionated target proteins. Without a predisposition to searching for the expected isopeptides based on calculated molecular mass and relying instead on the characteristic MS/MS fragmentation pattern to identify sumolylation, we demonstrate that several other lysine residues located not within the perfect consensus sumoylation motif psiKXE/D, where psi represents a large hydrophobic amino acid, and X represents any amino acid, can be sumolylated with a reconstituted in vitro system containing only the SUMO proteins, E1-activating enzyme and E2-conjugating enzyme (Ubc9). In all cases, target sites that can be sumoylated by SUMO-2 were shown to be equally susceptible to SUMO-1 attachments which include specific sites on SUMO-2 itself, Ubc9, and the recombinant CENP-C fragments. Two non-consensus sites on one of the CENP-C fragments were found to be sumoylated in addition to the predicted site on the other fragment. The developed methodologies should facilitate future studies in delineating the dynamics and substrate specificities of SUMO-1/2/3 modifications and the respective roles of E3 ligases in the process.
由小泛素样修饰物(SUMO)蛋白介导的蛋白质SUMO化是一种重要的翻译后调控修饰。当SUMO被鉴定为着丝粒蛋白CENP-C突变体的高拷贝抑制子时,首次提出了其在染色体动力学控制中的作用。CENP-C本身包含一个共有SUMO化序列基序,该基序与其DNA结合和着丝粒定位结构域部分重叠。为了确定CENP-C是否可以被SUMO化,开发了基于串联质谱(MS)的策略,用于高灵敏度鉴定和测序SDS-PAGE分级分离的靶蛋白的凝胶内消化胰蛋白酶肽段中存在的SUMO化异肽。我们不基于计算分子量预先搜索预期的异肽,而是依靠特征性的MS/MS裂解模式来鉴定SUMO化,结果表明,在仅包含SUMO蛋白、E1激活酶和E2缀合酶(Ubc9)的重组体外系统中,位于完美共有SUMO化基序psiKXE/D之外的其他几个赖氨酸残基也可以被SUMO化,其中psi代表一个大的疏水氨基酸,X代表任何氨基酸。在所有情况下,可被SUMO-2 SUMO化的靶位点对SUMO-1连接同样敏感,SUMO-1连接包括SUMO-2本身、Ubc9和重组CENP-C片段上的特定位点。除了另一个片段上的预测位点外,还发现CENP-C片段之一上的两个非共有位点被SUMO化。所开发的方法应有助于未来研究SUMO-1/2/3修饰的动力学和底物特异性,以及E3连接酶在此过程中的各自作用。