Pichler Andrea, Knipscheer Puck, Saitoh Hisato, Sixma Titia K, Melchior Frauke
Max-Planck Institute for Biochemistry, Am Klopferspitz 18, 82152 Martinsried, Germany.
Nat Struct Mol Biol. 2004 Oct;11(10):984-91. doi: 10.1038/nsmb834. Epub 2004 Sep 19.
Post-translational modification with the ubiquitin-related protein SUMO1 requires the E1 enzyme Aos1-Uba2 and the E2 enzyme Ubc9. Distinct E3 ligases strongly enhance modification of specific targets. The SUMO E3 ligase RanBP2 (also known as Nup358) has no obvious similarity to RING- or HECT-type enzymes. Here we show that RanBP2's 30-kDa catalytic fragment is a largely unstructured protein. Despite two distinct but partially overlapping 79-residue catalytic domains, one of which is sufficient for maximal activity, RanBP2 binds to Ubc9 in a 1:1 stoichiometry. The identification of nine RanBP2 and three Ubc9 side chains that are important for RanBP2-dependent SUMOylation indicates largely hydrophobic interactions. These properties distinguish RanBP2 from all other known E3 ligases, and we speculate that RanBP2 exerts its catalytic effect by altering Ubc9's properties rather than by mediating target interactions.
与泛素相关蛋白SUMO1的翻译后修饰需要E1酶Aos1-Uba2和E2酶Ubc9。不同的E3连接酶能强烈增强特定靶标的修饰。SUMO E3连接酶RanBP2(也称为Nup358)与RING型或HECT型酶没有明显相似性。我们在此表明,RanBP2的30 kDa催化片段是一种基本上无结构的蛋白质。尽管有两个不同但部分重叠的79个残基的催化结构域,其中一个结构域足以实现最大活性,但RanBP2以1:1的化学计量比与Ubc9结合。对RanBP2依赖性SUMO化很重要的九个RanBP2侧链和三个Ubc9侧链的鉴定表明主要是疏水相互作用。这些特性使RanBP2与所有其他已知的E3连接酶区分开来,我们推测RanBP2通过改变Ubc9的特性而非通过介导靶标相互作用来发挥其催化作用。