首页> 美国卫生研究院文献>Journal of Virology >ICP4-binding sites in the promoter and coding regions of the herpes simplex virus gD gene contribute to activation of in vitro transcription by ICP4.
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ICP4-binding sites in the promoter and coding regions of the herpes simplex virus gD gene contribute to activation of in vitro transcription by ICP4.

机译:单纯疱疹病毒gD基因的启动子和编码区中的ICP4结合位点有助于通过ICP4激活体外转录。

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摘要

The herpes simplex virus immediate-early gene product ICP4 activates the transcription of viral early and late genes. We characterized the DNA sequence elements of the early glycoprotein D (gD) gene that play a role in the response to ICP4 in vitro. Using gel mobility shift assays and DNase I footprinting, we identified three ICP4-binding sites, two 5' to the mRNA start site and a third within the coding region. Site II, which gave a footprint between nucleotides -75 and -111 relative to the RNA start site, was previously identified by Faber and Wilcox and contained the reported consensus ICP4-binding site. Site III, which was located between nucleotides +122 and +163, was very similar to the site II sequence, including a core consensus binding sequence, TCGTC. The site I sequence (nucleotides -308 to -282), however, did not share significant homology with either site II or site III. In vitro transcription experiments from mutant constructs of the gD promoter indicated that all three ICP4-binding sites contribute to the stimulation of transcription by ICP4. DNase I footprinting of the gD promoter with uninfected nuclear extracts of HeLa cells showed protection of two very G-rich sequences between nucleotides -33 and -75. We propose that optimal transcription of the gD gene depends on the interaction of ICP4 with multiple binding sites across the gene and cellular factors that recognize specific sequence elements in the promoter.
机译:单纯疱疹病毒即刻早期基因产物ICP4激活病毒早期和晚期基因的转录。我们表征了早期糖蛋白D(gD)基因的DNA序列元素,在体外对ICP4的响应中发挥作用。使用凝胶迁移率移动分析和DNase I足迹,我们确定了三个ICP4结合位点,两个5'到mRNA起始位点,第三个在编码区内。相对于RNA起始位点而言,位点II相对于RNA起始位点的足迹介于-75至-111之间,先前已被Faber和Wilcox鉴定,并包含报告的共有ICP4结合位点。位于核苷酸+122和+163之间的位点III与位点II序列非常相似,包括核心共有结合序列TCGTC。然而,位点I的序列(核苷酸-308至-282)与位点II或位点III没有明显的同源性。从gD启动子突变体构建体进行的体外转录实验表明,所有三个ICP4结合位点均有助于ICP4刺激转录。用未感染的HeLa细胞核提取物对gD启动子进行的DNase I足迹检测表明,在核苷酸-33和-75之间存在两个非常富G的序列的保护。我们建议gD基因的最佳转录取决于ICP4与跨基因的多个结合位点和识别启动子中特定序列元件的细胞因子的相互作用。

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