Herman-Bachinsky Y, Ryoo H-D, Ciechanover A, Gonen H
Cancer and Vascular Biology Research Center, The Rappaport Faculty of Medicine and Research Institute, Technion-Israel Institute of Technology, Haifa, Israel.
Cell Death Differ. 2007 Apr;14(4):861-71. doi: 10.1038/sj.cdd.4402079. Epub 2007 Jan 5.
Inhibitors of apoptosis proteins (IAPs) suppress cell death by inactivating proapoptotic regulators, and therefore play important roles in controlling apoptosis in normal and malignant cells. Many IAPs are ubiquitin ligases, and their activity is mediated via ubiquitination and subsequent degradation of their targets. Here we corroborate a previous observation that DIAP1 (Drosophila IAP1) can be degraded via a two-step mechanism: (i) limited caspase-mediated cleavage and (ii) degradation of the released fragment via the ubiquitin N-end rule pathway. Yet, we demonstrate that this pathway is not the only one involved in DIAP1 degradation, and the intact protein can be degraded independent of prior caspase cleavage. Importantly, this mode of degradation does not require the RING-finger-mediated autoubiquitinating activity of DIAP1, believed to target many RING-finger E3s for self-destruction. Our preliminary data suggest that DIAP2 mediates DIAP1 degradation, suggesting a novel regulatory loop within the apoptotic pathway. Studying the role of the autoubiquitinating activity of DIAP1, we demonstrate that it does not involve formation of Lys48-based polyubiquitin chains, but probably chains linked via Lys63. Our preliminary data suggest that the autoubiquitination serves to attenuate the ligase activity of DIAP1 towards its exogenous substrates.
凋亡抑制蛋白(IAPs)通过使促凋亡调节因子失活来抑制细胞死亡,因此在控制正常细胞和恶性细胞的凋亡中发挥重要作用。许多IAPs是泛素连接酶,其活性通过泛素化及其靶标的后续降解来介导。在这里,我们证实了先前的一项观察结果,即DIAP1(果蝇IAP1)可通过两步机制降解:(i)有限的半胱天冬酶介导的切割和(ii)通过泛素N端规则途径降解释放的片段。然而,我们证明该途径不是参与DIAP1降解的唯一途径,完整的蛋白质可以独立于先前的半胱天冬酶切割而降解。重要的是,这种降解模式不需要DIAP1的RING指介导的自泛素化活性,据信该活性靶向许多RING指E3进行自我破坏。我们的初步数据表明DIAP2介导DIAP1的降解,提示凋亡途径内存在一种新的调节环。研究DIAP1的自泛素化活性的作用,我们证明它不涉及基于Lys48的多泛素链的形成,但可能是通过Lys63连接的链。我们的初步数据表明自泛素化用于减弱DIAP1对外源底物的连接酶活性。