Liu Mingjuan, Hummer B Timothy, Li Xiaoling, Hassel Bret A
Program in Molecular and Cell Biology, University of Maryland, School of Medicine, Baltimore, MD 21201, USA.
J Interferon Cytokine Res. 2004 Nov;24(11):647-54. doi: 10.1089/jir.2004.24.647.
Interferon (IFN)-stimulated gene (15 kDa) (ISG15) is a ubiquitin-like protein that forms covalent conjugates with cellular proteins. ISG15 is induced by IFN, microbial challenge, and p53, suggesting that it represents a genetic response that is shared among diverse stress stimuli. To investigate the regulation of this posttranslational modification pathway by a genotoxic chemotherapeutic agent, we examined ISG15 induction and conjugation in cells treated with the topoisomerase I (topoI) poison, camptothecin (CPT). CPT induced ISG15mRNA, and induction required protein synthesis and a functional p53 protein. However, IFN and the Jak-Stat components of the IFN signaling pathway were dispensable for CPT induction of ISG15. CPT induced free ISG15 and conjugates in a dose-dependent and time-dependent manner. A single 55-kDa protein was the prominent CPT-induced ISG15 conjugate and localized to the nuclear compartment. CPT-induced ISG15 conjugates were distinct from those induced by IFN; however, CPT treatment dramatically enhanced ISG15 conjugation in response to IFN. These findings provide the first evidence of a stimulus-specific induction of discrete ISG15 conjugate species and demonstrate that treatment with a combination of cancer therapeutic agents can cooperate to enhance ISG15 conjugation. Identification of the specific ISG15 conjugates induced by chemotherapeutic agents may reveal novel molecular targets.
干扰素(IFN)刺激基因(15 kDa)(ISG15)是一种类泛素蛋白,可与细胞蛋白形成共价缀合物。ISG15由IFN、微生物刺激和p53诱导,这表明它代表了一种在多种应激刺激中共享的基因反应。为了研究基因毒性化疗药物对这种翻译后修饰途径的调控,我们检测了用拓扑异构酶I(topoI)毒药喜树碱(CPT)处理的细胞中ISG15的诱导和缀合情况。CPT诱导ISG15mRNA,诱导需要蛋白质合成和功能性p53蛋白。然而,IFN和IFN信号通路的Jak-Stat成分对于CPT诱导ISG15并非必需。CPT以剂量和时间依赖性方式诱导游离ISG15和缀合物。一种单一的55 kDa蛋白是CPT诱导的主要ISG15缀合物,定位于核区室。CPT诱导的ISG15缀合物与IFN诱导的不同;然而,CPT处理显著增强了对IFN的ISG15缀合反应。这些发现提供了离散的ISG15缀合物物种特异性刺激诱导的首个证据,并证明联合使用癌症治疗药物可协同增强ISG15缀合。鉴定化疗药物诱导的特定ISG15缀合物可能揭示新的分子靶点。