Ryoo Hyung Don, Bergmann Andreas, Gonen Hedva, Ciechanover Aaron, Steller Hermann
Howard Hughes Medical Institute, Strang Laboratory of Cancer Research, The Rockefeller University Box 252, 1230 York Ave. New York, NY 10021, USA.
Nat Cell Biol. 2002 Jun;4(6):432-8. doi: 10.1038/ncb795.
Cell death in higher organisms is negatively regulated by Inhibitor of Apoptosis Proteins (IAPs), which contain a ubiquitin ligase motif, but how ubiquitin-mediated protein degradation is regulated during apoptosis is poorly understood. Here, we report that Drosophila melanogaster IAP1 (DIAP1) auto-ubiquitination and degradation is actively regulated by Reaper (Rpr) and UBCD1. We show that Rpr, but not Hid (head involution defective), promotes significant DIAP1 degradation. Rpr-mediated DIAP1 degradation requires an intact DIAP1 RING domain. Among the mutations affecting ubiquitination, we found ubcD1, which suppresses rpr-induced apoptosis. UBCD1 and Rpr specifically bind to DIAP1 and stimulate DIAP1 auto-ubiquitination in vitro. Our results identify a novel function of Rpr in stimulating DIAP1 auto-ubiquitination through UBCD1, thereby promoting its degradation.
高等生物中的细胞死亡受到凋亡抑制蛋白(IAPs)的负调控,IAPs含有泛素连接酶基序,但人们对凋亡过程中泛素介导的蛋白质降解如何受到调控知之甚少。在此,我们报告果蝇IAP1(DIAP1)的自泛素化和降解受到收割者(Rpr)和UBCD1的积极调控。我们表明,Rpr而非Hid(头部内卷缺陷蛋白)能促进DIAP1的显著降解。Rpr介导的DIAP1降解需要完整的DIAP1环指结构域。在影响泛素化的突变中,我们发现了ubcD1,它能抑制rpr诱导的细胞凋亡。UBCD1和Rpr能特异性结合DIAP1并在体外刺激DIAP1的自泛素化。我们的结果确定了Rpr通过UBCD1刺激DIAP1自泛素化从而促进其降解的新功能。