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人疱疹病毒6B型起源结合蛋白:DNA结合结构域和共有结合序列。

Human herpesvirus 6B origin-binding protein: DNA-binding domain and consensus binding sequence.

作者信息

Inoue N, Pellett P E

机构信息

National Institute of Health, Tokyo, Japan.

出版信息

J Virol. 1995 Aug;69(8):4619-27. doi: 10.1128/JVI.69.8.4619-4627.1995.

Abstract

We previously demonstrated by a DNA-binding assay that the human herpesvirus 6B (HHV-6B) replication origin has a structure similar to those of alphaherpesviruses, although the HHV-6B and herpes simplex virus type 1 (HSV-1) origin-binding proteins (OBPs) and origins are not interchangeable. Here we describe additional properties of the interaction between HHV-6B OBP and the HHV-6B origin. Competitive electrophoretic mobility shift assays (EMSAs) with DNA duplexes containing single-base alterations allowed deduction of a consensus DNA sequence for HHV-6B-specific OBP binding, YGWYCWCCY, where Y is T or C and W is T or A, while that for HSV-1-specific binding was reported to be YGYTCGCACT. By EMSA, the HHV-6B OBP DNA-binding domain was mapped to a segment containing amino acids 482 to 770. However, in Southwestern (protein-DNA) blotting, the region sufficient for the DNA binding encompassed only amino acids 657 to 770. Similarly, Southwestern blotting showed that amino acids 689 to 851 of HSV-1 OBP had HSV-1 origin-binding activity, although this region was insufficient for origin binding in the EMSA. Although the longer DNA-binding domains identified by EMSA have marginal overall homology among HHV-6B and alphaherpesvirus OBP homologs, the smaller regions sufficient for the binding observed by Southwestern blotting have significant similarity. From these results, we propose a hypothesis that the DNA-binding domain of herpesvirus OBPs consists of two subdomains, one containing a conserved motif that contacts DNA directly, and another, less well conserved, that may modulate either the conformation or accessibility of the binding domain.

摘要

我们之前通过DNA结合试验证明,人类疱疹病毒6B(HHV-6B)的复制起点具有与α疱疹病毒相似的结构,尽管HHV-6B和1型单纯疱疹病毒(HSV-1)的起点结合蛋白(OBP)及起点不能互换。在此,我们描述了HHV-6B OBP与HHV-6B起点之间相互作用的其他特性。利用含有单碱基改变的DNA双链进行竞争性电泳迁移率变动分析(EMSA),推导出HHV-6B特异性OBP结合的共有DNA序列为YGWYCWCCY,其中Y为T或C,W为T或A,而据报道HSV-1特异性结合的共有序列为YGYTCGCACT。通过EMSA,HHV-6B OBP的DNA结合结构域被定位到包含氨基酸482至770的片段。然而,在蛋白质-DNA印迹法(Southwestern印迹法)中,足以进行DNA结合的区域仅包含氨基酸657至770。同样,Southwestern印迹法显示,HSV-1 OBP的氨基酸689至851具有HSV-1起点结合活性,尽管该区域在EMSA中不足以进行起点结合。尽管通过EMSA鉴定出的较长DNA结合结构域在HHV-6B和α疱疹病毒OBP同源物之间总体同源性较低,但通过Southwestern印迹法观察到的足以进行结合的较小区域具有显著相似性。基于这些结果,我们提出一个假说,即疱疹病毒OBP的DNA结合结构域由两个亚结构域组成,一个包含直接与DNA接触的保守基序,另一个保守性较差,可能调节结合结构域的构象或可及性。

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