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Sp1 a CAAT-binding factor and the adenovirus major late promoter transcription factor interact with functional regions of the gamma-fibrinogen promoter.

机译:Sp1一种CAAT结合因子和腺病毒主要晚期启动子转录因子与γ-纤维蛋白原启动子的功能区相互作用。

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摘要

To study the factors which influence the coordinately and developmentally regulated expression of the three adjacent fibrinogen genes, we have defined the functional regions of the gamma-fibrinogen promoter and the proteins which bind to them. Using a series of 5' and internal deletion mutations, we found that sequences between 88 and 43 base pairs (bp) upstream of the gamma-fibrinogen transcription initiation site functioned in cis to direct properly initiated mRNA accumulation in transfected hepatocytes. The efficient function of these sequences was highly distance dependent, since transcriptional activity decreased by 92% when they were moved 32 bp upstream of the TATA box. We demonstrated that two known and one putative transcriptional factors interacted with this 47-bp sequence. The transcription factor Sp1 interacted with sequences between -51 and -46 as demonstrated by protection from DNase I digestion with the purified protein. Directly adjacent to the Sp1 site, between nucleotides -66 and -53, there was a sequence which bound a CAAT-binding factor. Finally, sequences just 5' to the CAAT factor-binding site interacted with the adenovirus major late transcriptional factor as previously demonstrated. Internal deletion mutations which disrupt these interactions diminished the activity of the promoter in vivo. One consequence of the interaction of these proteins is that a bend is placed in the DNA at or near their sites of interaction.
机译:为了研究影响三个相邻纤维蛋白原基因的协调和发育调控表达的因素,我们定义了γ-纤维蛋白原启动子的功能区域以及与其结合的蛋白质。使用一系列的5'和内部删除突变,我们发现在88-43个碱基对(bp)的上游的伽玛纤维蛋白原转录起始位点的顺式作用,以指导正确启动的mRNA在转染的肝细胞中的积累。这些序列的有效功能高度依赖于距离,因为当将它们向TATA盒上游移动32 bp时,转录活性降低了92%。我们证明了两个已知和一个推定的转录因子与此47 bp序列进行交互。转录因子Sp1与-51到-46之间的序列相互作用,这可以通过纯化的蛋白质对DNase I的保护来实现。与Sp1位点直接相邻,在核苷酸-66和-53之间,有一个结合CAAT结合因子的序列。最后,如前所述,CAAT因子结合位点5'端的序列与腺病毒主要晚期转录因子相互作用。破坏这些相互作用的内部缺失突变减弱了启动子的体内活性。这些蛋白质相互作用的一个结果是在DNA的相互作用位点处或附近有一个弯曲。

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