首页> 美国卫生研究院文献>Journal of Virology >DNA binding specificity of the bovine papillomavirus E1 protein is determined by sequences contained within an 18-base-pair inverted repeat element at the origin of replication.
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DNA binding specificity of the bovine papillomavirus E1 protein is determined by sequences contained within an 18-base-pair inverted repeat element at the origin of replication.

机译:牛乳头瘤病毒E1蛋白的DNA结合特异性是由复制起点上18个碱基对的反向重复元件中包含的序列决定的。

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摘要

Bovine papillomavirus type 1 (BPV-1) DNA replicates episomally and requires two virally expressed proteins, E1 and E2, for this process. Both proteins bind to the BPV-1 genome in the region that functions as the origin of replication. The binding sequences for the E2 protein have been characterized previously, but little is known about critical sequence requirements for E1 binding. Using a bacterially expressed E1 fusion protein, we examined binding of the BPV-1 E1 protein to the origin region. E1 strongly protected a 28-bp segment of the origin (nucleotides 7932 to 15) from both DNase I and exonuclease III digestion. Additional exonuclease III protection was observed beyond the core region on both the 5' and 3' sides, suggesting that E1 interacted with more distal sequences as well. Within the 28-bp protected core, there were two overlapping imperfect inverted repeats (IR), one of 27 bp and one of 18 bp. We show that sequences within the smaller, 18-bp IR element were sufficient for specific recognition of DNA by E1 and that additional BPV-1 sequences beyond the 18-bp IR element did not significantly increase origin binding by E1 protein. While the 18-bp IR element contained sequences sufficient for specific binding by E1, E1 did not form a stable complex with just the isolated 18-bp element. Formation of a detectable E1-DNA complex required that the 18-bp IR be flanked by additional DNA sequences. Furthermore, binding of E1 to DNA containing the 18-bp IR increased as a function of overall increasing fragment length. We conclude that E1-DNA interactions outside the boundaries of the 18-bp IR are important for thermodynamic stabilization of the E1-DNA complex. However, since the flanking sequences need not be derived from BPV-1, these distal E1-DNA interactions are not sequence specific. Comparison of the 18-bp IR from BPV-1 with the corresponding region from other papillomaviruses revealed a symmetric conserved consensus sequence, T-RY--TTAA--RY-A, that may reflect the specific nucleotides critical for E1-DNA recognition.
机译:牛乳头瘤病毒1型(BPV-1)DNA游离复制,并需要两个病毒表达的蛋白E1和E2进行此过程。两种蛋白都在作为复制起点的区域中结合BPV-1基因组。 E2蛋白的结合序列以前已经进行了表征,但是对于E1结合的关键序列要求知之甚少。使用细菌表达的E1融合蛋白,我们检查了BPV-1 E1蛋白与起始区域的结合。 E1强烈保护DNA酶I和核酸外切酶III消化的起点的28 bp片段(核苷酸7932至15)。在5'和3'侧的核心区域之外还观察到了额外的核酸外切酶III保护,这表明E1也与更多的远端序列相互作用。在28 bp的受保护核心内,有两个重叠的不完美​​反向重复序列(IR),一个为27 bp,另一个为18 bp。我们显示较小的18 bp红外元件内的序列足以用于E1对DNA的特异性识别,并且超出18 bp红外元件的其他BPV-1序列不会显着增加E1蛋白的起源结合。尽管18 bp的IR元件包含足以与E1特异性结合的序列,但E1并未与分离的18 bp元件形成稳定的复合物。要形成可检测的E1-DNA复合物,则需要在18 bp的IR两侧附加其他DNA序列。此外,E1与包含18 bp IR的DNA的结合随片段长度整体增加而增加。我们得出结论,在18 bp IR边界之外的E1-DNA相互作用对于E1-DNA复合物的热力学稳定很重要。但是,由于不需要从BPV-1衍生侧翼序列,因此这些远端E1-DNA相互作用不是序列特异性的。将BPV-1的18 bp IR与其他乳头瘤病毒的相应区域进行比较,发现对称的保守共有序列T-RY-TTAA-RY-A,可能反映了对E1-DNA识别至关重要的特定核苷酸。

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