Faumont Nathalie, Le Clorennec Christophe, Teira Pierre, Goormachtigh Gauthier, Coll Jean, Canitrot Yvan, Cazaux Christophe, Hoffmann Jean-Sébastien, Brousset Pierre, Delsol Georges, Feuillard Jean, Meggetto Fabienne
Institut National de la Sante et de la Recherche Medicale-U563, CPTP.
Cancer Res. 2009 Jun 15;69(12):5177-85. doi: 10.1158/0008-5472.CAN-08-2866. Epub 2009 Jun 2.
The repair DNA polymerase beta (Polbeta), when overexpressed, plays a critical role in generating genetic instability via its interference with the genomic replication program. Up-regulation of Polbeta has been reported in many tumor types that exhibit genetic aberrations, including EBV-related B-cell lymphomas. However, the mechanisms responsible for its overexpression have never been examined. Here, we report that both expression and activity of Polbeta, in EBV-immortalized B cells, are induced by several natural genetic variants of LMP1, an oncoprotein associated with the vast majority of EBV-related tumors. Conversely, we found that the expression of Polbeta decreased when LMP1 signaling was down-regulated by a dominant negative of LMP1 or an inhibitor of the nuclear factor-kappaB (NF-kappaB) pathway, the main transduction pathway activated by LMP1, strongly supporting a role of NF-kappaB in the LMP1-mediated Polbeta regulation. Using electrophoretic mobility shift assay experiments from several EBV-immortalized B-cell nuclear extracts, we identified an LMP1-dependent p50/c-Rel heterodimer on a proximal kappaB binding site (-211 to -199nt) of the Polbeta promoter. This result was correlated with a specific Polbeta kappaB transcriptional activity. Taken together, our data enlighten a new mechanism responsible for Polbeta overexpression in EBV-infected cells, mediated by LMP1 and dependent on NF-kappaB activation.
修复性DNA聚合酶β(Polβ)在过度表达时,会通过干扰基因组复制程序在产生遗传不稳定性方面发挥关键作用。在许多表现出遗传畸变的肿瘤类型中,包括与EB病毒相关的B细胞淋巴瘤,都报道了Polβ的上调。然而,其过度表达的机制从未被研究过。在此,我们报道在EB病毒永生化的B细胞中,Polβ的表达和活性均由LMP1的几种天然遗传变异体诱导,LMP1是一种与绝大多数EB病毒相关肿瘤有关的癌蛋白。相反,我们发现当LMP1信号通过LMP1的显性阴性或核因子κB(NF-κB)途径(LMP1激活的主要转导途径)的抑制剂下调时,Polβ的表达会降低,这有力地支持了NF-κB在LMP1介导的Polβ调节中的作用。通过对几种EB病毒永生化的B细胞核提取物进行电泳迁移率变动分析实验,我们在Polβ启动子的近端κB结合位点(-211至-199nt)鉴定出一种LMP1依赖性的p50/c-Rel异二聚体。这一结果与特定的Polβ κB转录活性相关。综上所述,我们的数据揭示了一种由LMP1介导且依赖于NF-κB激活的、导致EB病毒感染细胞中Polβ过度表达的新机制。