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The mechanism by which the human apolipoprotein B gene reducer operates involves blocking of transcriptional activation by hepatocyte nuclear factor 3.

机译:人类载脂蛋白B基因还原子的运作机制涉及肝细胞核因子3阻止转录激活。

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摘要

Previously, we showed that when a DNA fragment extending from -3067 to -2734 of the human apolipoprotein B (apo-B) gene is inserted immediately upstream of an apo-B promoter segment (-139 to +121), transcription from this promoter is reduced by about 10-fold in cultured colon carcinoma cells (CaCo-2) but not in cultured hepatoma cells (HepG2). We postulated that this reducer operates by a mechanism involving active repression of a transcriptional activator that binds to the segment from -111 to -88 of the apo-B promoter (B. Paulweber and B. Levy-Wilson, J. Biol. Chem. 266:24161-24168 1991). In the current study, the reducer element has been localized to a 24-bp sequence from -2801 to -2778 of the apo-B gene that contains a binding site for the negative regulatory protein ARP-1. Furthermore, we have demonstrated that the transcription factor hepatocyte nuclear factor 3 alpha (HNF-3 alpha) binds to the sequence 5'-TGTTTGCTTTTC-3' from -95 to -106 of the apo-B promoter, to stimulate transcription. Transcriptional activation by HNF-3 is repressed when the reducer sequence is inserted immediately upstream of the HNF-3 binding site, suggesting a mechanism by which the reducer-bound protein blocks the activation promoted by HNF-3. Data from cotransfection experiments in which ARP-1 is overexpressed in the absence of its binding site suggest that ARP-1 interacts either directly or via a mediator protein with proteins recognizing the HNF-3 site and that this interaction is sufficient to repress transcriptional activation by HNF-3. Because transcriptional activation by Sp1 is not affected by the reducer, it is unlikely that the reducer interacts directly with basic components of the transcriptional machinery.
机译:以前,我们显示了当人类载脂蛋白B(apo-B)基因的从-3067延伸到-2734的DNA片段紧接在apo-B启动子片段(-139至+121)的上游时,该启动子的转录在培养的结肠癌细胞(CaCo-2)中,其降低约10倍,而在培养的肝癌细胞(HepG2)中则没有降​​低。我们推测该还原剂通过涉及与载脂蛋白B启动子的-111至-88的片段结合的转录激活因子的主动抑制而起作用的机制起作用(B.Paulweber和B.Levy-Wilson,J.Biol。 266:24161-24168 1991)。在当前的研究中,还原子元件已定位于载脂蛋白B基因的-2801至-2778的24 bp序列中,该序列包含负调控蛋白ARP-1的结合位点。此外,我们已经证明,转录因子肝细胞核因子3α(HNF-3 alpha)与载脂蛋白B启动子的-95至-106的5'-TGTTTGCTTTTC-3'序列结合,以刺激转录。当将还原剂序列直接插入HNF-3结合位点上游时,HNF-3的转录激活受到抑制,这表明还原剂结合蛋白阻断HNF-3促进的激活的机制。在不存在ARP-1结合位点的情况下过表达ARP-1的共转染实验数据表明,ARP-1直接或通过介体蛋白与识别HNF-3位点的蛋白相互作用,这种相互作用足以抑制ARP-1的转录激活。 HNF-3。由于Sp1的转录激活不受还原子影响,因此还原子不太可能直接与转录机制的基本成分相互作用。

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