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首页> 外文期刊>Cell death & disease. >PARP-1-dependent RND1 transcription induced by topoisomerase I cleavage complexes confers cellular resistance to camptothecin
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PARP-1-dependent RND1 transcription induced by topoisomerase I cleavage complexes confers cellular resistance to camptothecin

机译:由拓扑异构酶诱导的PARP-1依赖性RND1转录I裂解复合物将细胞抗性赋予喜树碱

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RHO GTPases regulate essential functions such as the organization of the actin cytoskeleton. The classic members cycle between an active GTP-bound and an inactive GDP-bound conformation whereas atypical members are predominantly GTP-bound. Besides their well-established role, the classic RHO GTPases RHOB and RAC1, are rapidly induced and/or activated by genotoxic stress and contribute to the DNA damage response. Here we used camptothecin, a selective topoisomerase I (TOP1) inhibitor that stabilizes TOP1 cleavage complexes (TOP1cc), to search for other potential early DNA damage-inducible RHO GTPase genes. We identified that an atypical RHO GTPase, RND1, is rapidly induced by camptothecin. RND1 induction is closely associated with the presence of TOP1cc induced by camptothecin or by DNA lesions that elevate TOP1cc levels such as UV and hydrogen peroxide. We further demonstrated that camptothecin increases RND1 gene transcription and mRNA stability. Camptothecin also increases poly(ADP-ribose) polymerase 1 (PARP-1) activity, whose inhibition reduces RND1 transcription. In addition, overexpression of RND1 increases PARP-1, suggesting a cross-talk between PARP-1 and RND1. Finally, RND1 protects cells against camptothecin-induced apoptosis, and hence favors cellular resistance to camptothecin. Together, these findings highlight RND1 as an atypical RHO GTPase early induced by TOP1cc, and show that the TOP1cc-PARP-1-RND1 pathway protects cells against apoptosis induced by camptothecin.
机译:Rho GTPases调节基本功能,例如组织肌蛋白细胞骨架。在活动GTP绑定和非活动GDP绑定构象之间的经典成员周期,而非典型成员主要是GTP绑定。除了他们成熟的作用之外,经典的Rho GTP酶Rhob和RAC1迅速诱导和/或通过基因毒性应激激活,并有助于DNA损伤反应。在这里,我们使用喜树碱,一种选择性拓扑异构酶I(TOP1)抑制剂,其稳定TOP1切割复合物(TOP1CC),以寻找其他潜在的早期DNA损伤诱导rhO GTP酶基因。我们确定了非典型Rho GTPase,RND1,Camptothecin迅速诱导。 RND1诱导与喜树碱引起的TOP1CC的存在密切相关,或者通过升高TOP1CC水平,例如UV和过氧化氢的DNA病变。我们进一步证明了喜树碱增加RND1基因转录和mRNA稳定性。 Camptothecin还增加了聚(ADP-核糖)聚合酶1(PARP-1)活性,其抑制减少了RND1转录。此外,RND1的过表达增加了PARP-1,表明PARP-1和RND1之间的串扰。最后,RND1保护细胞免受喜树碱诱导的细胞凋亡,因此有利于对喜树碱的细胞抗性。这些发现将RND1突出显示为TOP1cc早期诱导的rND1作为非典型rho GTP酶,并表明TOP1CC-PARP-1-RND1途径保护细胞免受喜树碱诱导的细胞凋亡。

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