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首页> 外文期刊>Journal of Molecular Biology >The 2.2 angstrom structure of a permanganate-sensitive DNA site bound by the Epstein-Barr virus origin binding protein, EBNA1
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The 2.2 angstrom structure of a permanganate-sensitive DNA site bound by the Epstein-Barr virus origin binding protein, EBNA1

机译:EB病毒起源结合蛋白EBNA1结合的高锰酸盐敏感DNA位点的2.2埃结构

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Epstein-Barr nuclear antigen 1 (EBNA1) binds to four recognition sites in the minimal origin of latent DNA replication of Epstein-Barr virus and activates latent-phase replication of the viral genomes. Two of these EBNA1 binding sites become sensitive to permanganate oxidation when bound by the DNA binding and dimerization domains of EBNA1. We have previously solved the cs-crystal structure of this EBNA1 fragment bound to a consensus recognition site that is not sensitive to permanganate oxidation (CS). To understand the structural difference that underlies the permanganate sensitivity of EBNA1 binding sites, we have now solved the crystal structure of the EBNA1 DNA-binding and dimerization domains bound to a permanganate-sensitive site (CSA/T). Comparisons of permanganate-sensitive and insensitive EBNA1-DNA complexes have revealed only minor differences in protein and DNA structures. Ln the EBNA1-CSA/T structure, interstrand H-bonds for three consecutive base-pairs centered over the permanganate-sensitive thymine base are lengthened relative to the corresponding bonds in the EBNA1-CS complex, and three potential intrastrand H-bonds were observed between adjacent bases. We also observed that both the CS and CSA/T sequences are overwound by EBNA1 in the vicinity of the permanganate-sensitive thymine base. Finally, we show that the permanganate-sensitive thymine base in the CSA/T-EBNA1 complex is more accessible to solvent than the corresponding T in the EBNA-CS complex. (C) 1998 Academic Press. [References: 24]
机译:Epstein-Barr核抗原1(EBNA1)与Epstein-Barr病毒的潜在DNA复制的最小起点上的四个识别位点结合,并激活病毒基因组的潜在阶段复制。当被EBNA1的DNA结合和二聚结构域结合时,这些EBNA1结合位点中的两个对高锰酸盐氧化变得敏感。我们之前已经解决了该EBNA1片段的cs晶体结构,该结构绑定到对高锰酸盐氧化(CS)不敏感的共有识别位点。为了了解构成EBNA1结合位点高锰酸盐敏感性的基础的结构差异,我们现在解决了结合到高锰酸盐敏感性位点(CSA / T)的EBNA1 DNA结合和二聚结构域的晶体结构。对高锰酸盐敏感和不敏感的EBNA1-DNA复合物进行比较后发现,蛋白质和DNA结构仅存在微小差异。在EBNA1-CSA / T结构中,相对于EBNA1-CS复合物中的相应键,延长了以高锰酸盐敏感的胸腺嘧啶碱基为中心的三个连续碱基对的链间H键,并观察到了三个潜在的链内H键在相邻碱基之间。我们还观察到CS和CSA / T序列都在高锰酸盐敏感性胸腺嘧啶碱基附近被EBNA1覆盖。最后,我们表明,与EBNA-CS复合物中的相应T相比,CSA / T-EBNA1复合物中的高锰酸盐敏感性胸腺嘧啶碱更容易被溶剂吸收。 (C)1998年学术出版社。 [参考:24]

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