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首页> 外文期刊>American Journal of Physiology >An oligonucleotide decoy for transcription factor E2F inhibits mesangial cell proliferation in vitro.
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An oligonucleotide decoy for transcription factor E2F inhibits mesangial cell proliferation in vitro.

机译:转录因子E2F的寡核苷酸诱饵在体外抑制肾小球膜细胞增殖。

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The transcription factor E2F controls expression of several genes involved in cell proliferation including c-myc, c-myb, proliferating cell nuclear antigen (PCNA), and cdk2 kinase. Having established that both PCNA and cdk2 kinase are induced in rat mesangial cells (MC) by serum stimulation, we attempted to inhibit MC proliferation in vitro by transfecting these cells with cationic liposomes containing a synthetic double-stranded oligodeoxynucleotide (ODN) with high affinity for E2F. Using a gel mobility shift assay, we detected increased specific binding of E2F in MC following serum stimulation. This binding was completely inhibited by preincubation of MC nuclear extracts with the double-stranded ODN with high affinity for E2F but not by preincubation with a missense ODN containing two point mutations. MC were also transfected with a luciferase reporter gene construct containing three E2F binding sites. Luciferase activity was enhanced by serum stimulation of MC, and this effect was specifically abolished by cotransfection of MC with E2F decoy ODN. Furthermore, RT-PCR analysis revealed that serum-induced upregulation of PCNA and cdk2 kinase gene expression was inhibited by E2F decoy ODN transfection but not by transfection of missense ODN. These changes in gene expression were paralleled by a reduction in PCNA and cdk2 kinase protein expression in E2F decoy ODN transfected cells. MC number increased following serum stimulation. This effect was blunted by transfection with E2F decoy ODN but not by transfection of missense ODN. These data suggest that the transcription factor E2F plays a crucial role in the regulation of MC proliferation and that this factor can be successfully targeted to inhibit MC cell cycle progression.
机译:转录因子E2F控制与细胞增殖有关的几个基因的表达,包括c-myc,c-myb,增殖细胞核抗原(PCNA)和cdk2激酶。已经确定通过血清刺激在大鼠肾小球系膜细胞(MC)中诱导PCNA和cdk2激酶,我们试图通过用阳离子脂质体转染这些细胞来抑制体外MC增殖,该脂质体含有合成的对低亲和力的双链寡聚脱氧核苷酸(ODN) E2F。使用凝胶迁移率变动分析,我们检测到血清刺激后MC中E2F的特异性结合增加。通过将MC核提取物与对E2F具有高亲和力的双链ODN进行预孵育,可以完全抑制这种结合,但是,通过与包含两个点突变的错义ODN进行预孵育,则不能完全抑制这种结合。 MC还用包含三个E2F结合位点的荧光素酶报道基因构建体转染。血清刺激MC可以增强萤光素酶的活性,而MC与E2F诱饵ODN的共转染可特别消除这种作用。此外,RT-PCR分析表明,血清诱导的PCNA和cdk2激酶基因表达的上调受E2F诱饵ODN转染的抑制,而不受错义ODN转染的抑制。这些基因表达的变化与E2F诱饵ODN转染的细胞中PCNA和cdk2激酶蛋白表达的降低平行。血清刺激后MC数增加。通过E2F诱饵ODN转染,但未通过错义ODN转染,使这种作用减弱。这些数据表明,转录因子E2F在调节MC增殖中起关键作用,并且该因子可以成功地靶向抑制MC细胞周期进程。

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