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对人血小板衍生生长因子-B(c-sis,原癌基因)启动子的三重靶向特异性抑制因子结合和血小板衍生生长因子-B转录。

Triplex targeting of human PDGF-B (c-sis, proto-oncogene) promoter specifically inhibits factors binding and PDGF-B transcription.

作者信息

Liu J, Xu R, Jin Y, Wang D

机构信息

State Key Laboratory of Molecular Biology, Institute of Biochemistry and Cell Biology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Shanghai 200031, China.

出版信息

Nucleic Acids Res. 2001 Feb 1;29(3):783-91. doi: 10.1093/nar/29.3.783.

Abstract

Human c-sis/PDGF-B proto-oncogene has been shown to be overexpressed in a large percentage of human tumor cells establishing a growth-promoting, autocrine growth circuit. Triplex forming oligonucleotides (TFOs) can recognize and bind sequences in duplex DNA, and have received considerable attention because of their potential for targeting specific genomic sites. The c-sis/PDGF-B promoter contains a unique homopurine/homopyrimidine sequence (SIS proximal element, SPE), which is crucial for binding nuclear factors that provoke transcription. In order to develop specific transcriptional inhibitors of the human c-sis/PDGF-B proto-oncogene, 20 potential TFOs targeting part or all of the SPE were screened by gel mobility analysis. DNase I footprinting shows that the TFOs we designed can form a sequence-specific triplex with the target. Protein binding assays demonstrate that triplex formation inhibits nuclear factors binding the c-sis/PDGF-B promoter. Both transient and stable transfection experiments demonstrate that the transcriptional activity of the promoter is considerably inhibited by the TFOs. We propose that TFOs represent a therapeutic potential to specifically diminish the expression of c-sis/PDGF-B proto-oncogene in various pathologic settings where constitutive expression of this gene has been observed.

摘要

人c-sis/PDGF-B原癌基因已被证明在很大比例的人类肿瘤细胞中过度表达,从而建立了一个促进生长的自分泌生长回路。三链形成寡核苷酸(TFO)能够识别并结合双链DNA中的序列,因其具有靶向特定基因组位点的潜力而受到广泛关注。c-sis/PDGF-B启动子包含一个独特的同型嘌呤/同型嘧啶序列(SIS近端元件,SPE),该序列对于结合引发转录的核因子至关重要。为了开发人c-sis/PDGF-B原癌基因的特异性转录抑制剂,通过凝胶迁移分析筛选了20种靶向部分或全部SPE的潜在TFO。DNase I足迹分析表明,我们设计的TFO能够与靶标形成序列特异性三链体。蛋白质结合试验证明,三链体的形成抑制了核因子与c-sis/PDGF-B启动子的结合。瞬时转染和稳定转染实验均表明,TFO可显著抑制该启动子的转录活性。我们认为,在观察到该基因组成型表达的各种病理情况下,TFO具有特异性降低c-sis/PDGF-B原癌基因表达的治疗潜力。

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