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首页> 外文期刊>Journal of Molecular Biology >Indirect readout of DNA sequence by papillomavirus E2 proteins depends upon net cation uptake
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Indirect readout of DNA sequence by papillomavirus E2 proteins depends upon net cation uptake

机译:乳头瘤病毒E2蛋白间接读出DNA序列取决于净阳离子摄取

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The papillomavirus E2 proteins bind with high affinity to palindromic DNA sequences consisting of two highly conserved four base-pair sequences flanking a variable "spacer" of identical length (ACCG NNNN CGGT). While intimate contacts are observed between the bound proteins and conserved DNA in the available co-crystal structures, no contact is seen between the proteins and the spacer DNA. The ability of human papillomavirus strain 16 (HPV-1.6) E2 and bovine papillomavirus strain 1 (BPV-1) E2 to discriminate among binding sites with different spacer sequences is dependent on their sensitivity to the unique conformational and/or dynamic properties of the spacer DNA in a process termed "indirect readout ". Differential sequence-specific K+ uptake in low ionic strenth solutions lacking Mg2+ is observed upon E2 protein binding to 9 sites containing the AATT, TTAA or ACGT spacer sequences. in contrast, the cation displacement typical of protein-DNA complex formation is observed at high K+ concentrations or in the presence of Mg2+. These results are interpreted to reflect the sequence-specific stabilization of bent DNA conformations by cations localized within the narrowed minor grooves of the protein-bound DNA and the intrinsic structure and flexibility of the DNA target. Mg2+ differentially affects the binding of the HPV-16 E2 DNA binding domain (HPV16-E2/D) and the BPV-1 E2 DNA binding domain (BPV1-E2/D) to sites bearing different spacer sequences. This study suggests that monovalent and divalent cations contribute to the discrimination of DNA structure and flexibility that could in turn contribute to the specificity with which HPV16-E2/D and BPV1-E2/D mediate DNA replication and gene transcription. (c) 2006 Elsevier Ltd. All rights reserved.
机译:乳头瘤病毒E2蛋白与回文DNA序列具有高亲和力,回文DNA序列由两个高度保守的四个碱基对序列组成,两个碱基对序列位于相同长度的可变“间隔子”两侧(ACCG NNNN CGGT)。虽然在可用的共晶体结构中观察到结合蛋白和保守DNA之间的紧密接触,但在蛋白质和间隔DNA之间没有看到接触。人乳头瘤病毒株16(HPV-1.6)E2和牛乳头瘤病毒株1(BPV-1)E2区分具有不同间隔序列的结合位点的能力取决于它们对间隔子独特的构象和/或动态特性的敏感性DNA被称为“间接读出”的过程。在E2蛋白结合到9个含有AATT,TTAA或ACGT间隔序列的位点后,观察到缺乏Mg2 +的低离子强度溶液中不同的序列特异性K +吸收。相反,在高K +浓度或存在Mg2 +的情况下,可以观察到蛋白质-DNA复合物形成过程中典型的阳离子置换。这些结果被解释为反映了弯曲的DNA构象的序列特异性稳定,该阳离子通过位于蛋白质结合的DNA的狭窄小沟内的阳离子以及DNA靶标的固有结构和柔性而稳定。 Mg2 +差异影响HPV-16 E2 DNA结合结构域(HPV16-E2 / D)和BPV-1 E2 DNA结合结构域(BPV1-E2 / D)与带有不同间隔序列的位点的结合。这项研究表明,单价和二价阳离子有助于区分DNA结构和柔性,进而有助于HPV16-E2 / D和BPV1-E2 / D介导DNA复制和基因转录的特异性。 (c)2006 Elsevier Ltd.保留所有权利。

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