首页> 美国卫生研究院文献>Journal of Virology >Structural requirements in the herpes simplex virus type 1 transactivator Vmw65 for interaction with the cellular octamer-binding protein and target TAATGARAT sequences.
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Structural requirements in the herpes simplex virus type 1 transactivator Vmw65 for interaction with the cellular octamer-binding protein and target TAATGARAT sequences.

机译:1型单纯疱疹病毒反式激活因子Vmw65中与细胞八聚体结合蛋白和目标TAATGARAT序列相互作用的结构要求。

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摘要

Herpes simplex virus type 1 virion protein Vmw65 forms a complex (TRF.C) with TAATGARAT sequences and the cellular transcription factor oct-1, which has been implicated as an intermediate in the activation of gene expression by Vmw65. To examine structural requirements within Vmw65 for this interaction, we analyzed extracts of transfected cells that express mutant Vmw65 proteins by gel retardation assay and identified two regions in the primary sequence of Vmw65 which are necessary for in vitro assembly of TRF.C. The amino-terminal boundary for complex assembly and trans activation mapped between residues 49 and 75. At the carboxyl terminus, deletion as far as residue 388 did not affect in vitro TRF.C assembly, although trans-activating activity was abolished. Deletion beyond residue 388 rapidly impaired the ability of the protein to participate in the TRF.C complex, such that a truncated mutant of 380 residues was completely inactive. These requirements towards the carboxyl terminus overlap a region of strong local sequence similarity between Vmw65 and terminal protein p3 of bacteriophage phi 29. Although substitution of corresponding p3 residues into Vmw65 failed to produce a functional chimera, site-directed mutagenesis within the region of similarity identified a number of single-point mutant proteins which were completely deficient for TRF.C formation. These mutant proteins were also unable to trans activate expression from immediate-early promoters, despite the integrity of the acidic carboxyl terminus. The extreme sensitivity of both TRF.C formation and trans activation to single-residue substitutions within this region of Vmw65 suggests that it is directly involved in the protein-protein or protein-DNA interactions required for assembly of a transcriptional complex containing oct-1.
机译:单纯疱疹病毒1型病毒粒子蛋白Vmw65与TAATGARAT序列和细胞转录因子oct-1形成复合物(TRF.C),已被认为是Vmw65激活基因表达的中间体。为了检查Vmw65中这种相互作用的结构要求,我们通过凝胶阻滞分析法分析了表达突变型Vmw65蛋白的转染细胞提取物,并鉴定了Vmw65一级序列中TRF.C体外组装所必需的两个区域。复杂装配和反式激活的氨基末端边界位于残基49和75之间。在羧基末端,残基388的缺失并不会影响体外TRF.C装配,尽管反式激活活性被取消了。超过残基388的缺失迅速损害了蛋白质参与TRF.C复合物的能力,使得380个残基的截短突变体完全没有活性。这些对羧基末端的要求与噬菌体phi 29的Vmw65和末端蛋白p3之间的区域序列相似性强的区域重叠。尽管将相应的p3残基替换为Vmw65无法产生功能性嵌合体,但在相似性区域内进行了定点诱变完全缺乏TRF.C形成的许多单点突变蛋白。尽管酸性羧基末端的完整性,这些突变蛋白也不能从早期启动子反式激活表达。 TRF.C的形成和反式激活对Vmw65区域内单残基取代的极端敏感性表明,它直接参与了组装包含oct-1的转录复合物所需的蛋白质-蛋白质或蛋白质-DNA相互作用。

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