Merkley Nadine, Shaw Gary S
Department of Biochemistry & McLaughlin Macromolecular Structure Facility, The University of Western Ontario, London, Ontario, N6A 5C1, Canada.
J Biomol NMR. 2003 Jun;26(2):147-55. doi: 10.1023/a:1023571703783.
Ubiquitination plays an important role in many biological processes, including DNA repair, cell cycle regulation, and protein degradation. In the latter pathway the ubiquitin-conjugating enzymes or E2 enzymes are important proteins forming a key E2-ubiquitin thiolester prior to substrate labelling. While the structure of the 150-residue catalytic domain has been well characterized, a subset of E2 enzymes (class II) carry a variable length C-terminal "tail" where structural detail is not available. The presence of this C-terminal extension plays an important role in target recognition, ubiquitin chain assembly and oligomerization. In this work NMR spectroscopy was used to determine the secondary structure of the 215-residue yeast E2 protein Ubc1 and the interactions of its C-terminus with the catalytic domain. The C-terminal tail of Ubc1 was found to contain three alpha-helices between residues D169-S176, K183-L193 and N203-L213 providing the first evidence for a well-defined secondary structure in this region. Chemical shift mapping indicated that residues in the L2 loop of the catalytic domain were most affected indicating the C-terminus of Ubc1 likely interacts with this region. This site of interaction is distinct from that observed in the E2-ubiquitin thiolester and may act to protect the catalytic C88 residue and direct the interaction of ubiquitin in the thiolester intermediate.
泛素化在许多生物学过程中发挥着重要作用,包括DNA修复、细胞周期调控和蛋白质降解。在后一种途径中,泛素结合酶或E2酶是重要的蛋白质,在底物标记之前形成关键的E2-泛素硫酯。虽然150个残基的催化结构域的结构已得到充分表征,但一部分E2酶(II类)带有可变长度的C末端“尾巴”,其结构细节尚不清楚。这个C末端延伸的存在在靶标识别、泛素链组装和寡聚化中起着重要作用。在这项工作中,利用核磁共振光谱确定了215个残基的酵母E2蛋白Ubc1的二级结构及其C末端与催化结构域的相互作用。发现Ubc1的C末端尾巴在残基D169-S176、K183-L193和N203-L213之间包含三个α螺旋,这为该区域明确的二级结构提供了首个证据。化学位移图谱表明,催化结构域L2环中的残基受影响最大,表明Ubc1的C末端可能与该区域相互作用。这种相互作用位点与在E2-泛素硫酯中观察到的不同,可能起到保护催化性C88残基并指导硫酯中间体中泛素相互作用的作用。