首页> 外文OA文献 >The DNA binding domain of the varicella-zoster virus gene 62 protein interacts with multiple sequences which are similar to the binding site of the related protein of herpes simplex virus type 1.
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The DNA binding domain of the varicella-zoster virus gene 62 protein interacts with multiple sequences which are similar to the binding site of the related protein of herpes simplex virus type 1.

机译:水痘带状疱疹病毒基因62蛋白的DNA结合结构域与多个序列相互作用,这些序列类似于1型单纯疱疹病毒相关蛋白的结合位点。

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摘要

Varicella-zoster virus gene 62 encodes a protein with predicted Mr of 140,000D (VZV 140k) that shares extensive predicted amino acid sequence homology with the major immediate early (IE) transcriptional regulator protein of herpes simplex virus type 1 (HSV-1) Vmw175. The integrity of highly conserved region 2 is essential for the DNA binding and transcriptional regulatory functions of Vmw175. Similarly, an insertion mutation in region 2 (codons 468-641) of 140k eliminates the transcriptional repression and activation functions of this protein. We have expressed a fragment of 140k which encompasses region 2 as a non-fusion polypeptide in bacteria. This 140k DNA binding domain peptide (codons 417-646) binds to numerous DNA sequences throughout the VZV gene 62 promoter region. It induces multiple regions of protection from DNase I digestion, flanked by sites of DNase I hypersensitivity. Several of the sites recognized can be considered to be divergent forms of the consensus sequence which is recognized by Vmw175. However, by use of a panel of mutagenized probe fragments, we found that the 140k DNA binding domain was less sequence-specific than Vmw175 in its interactions with DNA. Consistent with this, the homologous Vmw175 DNA binding domain, and also intact Vmw175, recognize the gene 62 binding sites much less efficiently than the 140k DNA binding domain. Also in contrast to the situation with Vmw175, the 140k DNA binding domain failed to induce DNA bending when occupying the binding sites in its own promoter. Deletion analysis has mapped the minimal DNA binding domain of the VZV 140k protein, as measured in gel retardation analysis, to lie within residues 472 to 633. The differences in binding characteristics of the DNA binding domains of the homologous VZV 140k and HSV-1 Vmw175 IE proteins may account for the subtle differences in their regulatory activities in transfection assays and during virus growth in tissue culture.
机译:水痘带状疱疹病毒基因62编码一种具有140,000D的Mr预测蛋白的蛋白(VZV 140k),该蛋白与1型单纯疱疹病毒(HSV-1)Vmw175的主要立即早期(IE)转录调节蛋白具有广泛的预测氨基酸序列同源性。 。高度保守的区域2的完整性对于Vmw175的DNA结合和转录调控功能至关重要。同样,区域2(140k密码子)中的插入突变为140k,消除了该蛋白的转录抑制和激活功能。我们已经表达了140k的片段,其作为细菌中的非融合多肽涵盖了区域2。这个140k DNA结合结构域肽(密码子417-646)在整个VZV基因62启动子区域与许多DNA序列结合。它诱导了DNase I消化的多个保护区域,侧翼是DNase I超敏性位点。几个被识别的位点可以被认为是Vmw175识别的共有序列的不同形式。但是,通过使用一组诱变的探针片段,我们发现140k DNA结合结构域在与DNA的相互作用中比Vmw175具有更低的序列特异性。与此相一致,同源的Vmw175 DNA结合结构域以及完整的Vmw175识别基因62结合位点的效率比140k DNA结合结构域低得多。同样与Vmw175的情况相反,当占据其自身启动子的结合位点时,140k DNA结合结构域不能诱导DNA弯曲。缺失分析已绘制出在凝胶阻滞分析中测得的VZV 140k蛋白的最小DNA结合结构域位于残基472至633之内。同源VZV 140k和HSV-1 Vmw175的DNA结合结构域的结合特性差异IE蛋白可解释其在转染测定和组织培养中病毒生长过程中调节活性的细微差异。

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    Tyler, J K; Everett, R D;

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  • 年度 1993
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