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RNAi-mediated targeting of noncoding and coding sequences in DNA repair gene messages efficiently radiosensitizes human tumor cells

机译:RNAi介导的DNA修复基因信息中非编码和编码序列的靶向有效地使人类肿瘤细胞放射增敏

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摘要

Human tumor cell death during radiotherapy is caused mainly by ionizing radiation (IR)-induced DNA double-strand breaks (DSB), which are repaired by either homologous recombination repair (HRR) or nonhomologous end-joining (NHEJ). Although siRNA-mediated knockdown of DNA DSB repair genes can sensitize tumor cells to IR, this approach is limited by inefficiencies of gene silencing. In this study, we show that combining an artificial miRNA (amiR) engineered to target 3′-untranslated regions of XRCC2 (an HRR factor) or XRCC4 (an NHEJ factor) along with an siRNA to target the gene coding region can improve silencing efficiencies to achieve more robust radiosensitization than a single approach alone. Mechanistically, the combinatorial knockdown decreased targeted gene expression through both a reduction in mRNA stability and a blockade to mRNA translation. Together, our findings establish a general method of gene silencing that is more efficient and particularly suited for suppressing genes that are difficult to downregulate by amiR- or siRNA-based methods alone.
机译:放疗过程中人类肿瘤细胞的死亡主要是由电离辐射(IR)诱导的DNA双链断裂(DSB)引起的,该断裂可通过同源重组修复(HRR)或非同源末端连接(NHEJ)进行修复。尽管siRNA介导的DNA DSB修复基因的敲低可以使肿瘤细胞对IR敏感,但是这种方法受到基因沉默效率低下的限制。在这项研究中,我们表明将人工miRNA(amiR)工程化以靶向XRCC2(HRR因子)或XRCC4(NHEJ因子)的3'-非翻译区以及siRNA靶向基因编码区,可以提高沉默效率与仅使用单一方法相比,可以实现更强大的放射增敏作用。从机制上讲,组合敲除通过降低mRNA的稳定性和对mRNA翻译的阻滞而降低了靶向基因的表达。总之,我们的发现建立了一种基因沉默的通用方法,该方法更为有效,特别适合抑制难以仅通过基于amiR或siRNA的方法下调的基因。

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