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乳头瘤病毒E2蛋白序列特异性结合中的DNA结构与灵活性

DNA structure and flexibility in the sequence-specific binding of papillomavirus E2 proteins.

作者信息

Hines C S, Meghoo C, Shetty S, Biburger M, Brenowitz M, Hegde R S

机构信息

New York University Medical Center, Skirball Institute of Biomolecular Medicine, 540 First Avenue, New York, NY 10016, USA.

出版信息

J Mol Biol. 1998 Mar 6;276(4):809-18. doi: 10.1006/jmbi.1997.1578.

Abstract

The papillomavirus E2 proteins are transcriptional regulators that bind to a consensus DNA sequence ACCG NNNN CGGT. Multiple copies of this binding site are found in the viral genomes. The affinities of the naturally occurring binding sites for the E2 proteins are predominantly dependent upon the sequence of the NNNN spacer. The hierarchies of binding site affinities among the sites present in the viral genomes result in differential occupancy during the viral life-cycle. In turn, this differential binding regulates transcription from viral promoters, including those for the oncogenes E6 and E7. Structural and biochemical studies have shown that E2 proteins bend the DNA to which they specifically bind. Atomic resolution structures of complexes of the bovine papillomavirus strain 1 (BPV-1) E2 protein and DNA show that the protein does not contact the spacer DNA. A direct comparison of the binding of the DNA-binding domains of the E2 proteins from BPV-1 and human papillomavirus strain 16 (HPV-16) to a series of binding sites as a function of the sequence of their central spacer and/or the presence of a nick or gap in one strand of the spacer DNA is presented in this paper. The BPV-1 E2 DNA-binding domain is only moderately sensitive to the nature of the central spacer; less than several fold differences in affinity were observed when the DNA sequence of the spacer was varied and/or a nick or gap was introduced. In contrast, the HPV-16 E2 DNA-binding domain binds to sites containing A:T-rich central spacers with significantly increased affinity. The introduction of a nick or gap into the spacer of these high affinity sequences is very detrimental to HPV-16 E2 binding while comparable nicks or gaps have only small effects in the low affinity sequences. These results suggest that the HPV-16 E2 protein recognizes the structure of the DNA spacer and that the mechanism of DNA-sequence specific binding of the homologous HPV-16 E2 and BPV-1 E2 proteins is significantly different.

摘要

乳头瘤病毒E2蛋白是转录调节因子,可与共有DNA序列ACCG NNNN CGGT结合。该结合位点的多个拷贝存在于病毒基因组中。E2蛋白与天然存在的结合位点之间的亲和力主要取决于NNNN间隔区的序列。病毒基因组中存在的位点之间结合位点亲和力的层级关系导致在病毒生命周期中占据情况不同。反过来,这种差异结合调节病毒启动子的转录,包括癌基因E6和E7的启动子。结构和生化研究表明,E2蛋白会使其特异性结合的DNA发生弯曲。牛乳头瘤病毒1型(BPV-1)E2蛋白与DNA复合物的原子分辨率结构表明,该蛋白不与间隔区DNA接触。本文对BPV-1和人乳头瘤病毒16型(HPV-16)E2蛋白的DNA结合结构域与一系列结合位点的结合进行了直接比较,该比较是作为其中心间隔区序列和/或间隔区DNA一条链上切口或缺口存在情况的函数。BPV-1 E2 DNA结合结构域对中心间隔区的性质仅具有中等敏感性;当间隔区的DNA序列改变和/或引入切口或缺口时,观察到的亲和力差异小于几倍。相比之下,HPV-16 E2 DNA结合结构域与含有富含A:T的中心间隔区的位点结合时,亲和力显著增加。在这些高亲和力序列的间隔区引入切口或缺口对HPV-16 E2结合非常不利,而类似的切口或缺口对低亲和力序列的影响很小。这些结果表明,HPV-16 E2蛋白识别DNA间隔区的结构,并且同源的HPV-16 E2和BPV-1 E2蛋白的DNA序列特异性结合机制存在显著差异。

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