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Sf-PHB2,一个新的转录因子,通过一个 12 个碱基对的 DNA 元件驱动 WSSV Ie1 基因的表达。

Sf-PHB2, a new transcription factor, drives WSSV Ie1 gene expression via a 12-bp DNA element.

机构信息

Division of Livestock Infectious Diseases, State Key Laboratory of Veterinary Biotechnology, Harbin Veterinary Research Institute, Chinese Academy of Agricultural Sciences, 427 Maduan Street, Harbin, 150001, PR China.

出版信息

Virol J. 2012 Sep 17;9:206. doi: 10.1186/1743-422X-9-206.

Abstract

BACKGROUND

The WSSV immediate early gene ie1 is highly expressed throughout viral infection cycle and may play a central role in initiating viral replication during infection.

RESULTS

Here, a detailed characterization of the ie1 promoter was performed using deletion and mutation analyses to elucidate the role of the individual promoter motifs. Three results were obtained: 1) the ie1 promoter is a classical eukaryotic promoter that contains the initiator element (Inr) and TATA box responsible for the basal promoter activity; 2) mutation or truncation of a predicted Sp1 site decreased the level of promoter activity by about 3-fold, indicating that the Sp1 site is an important cis-element of the promoter; and 3) truncation of a 12-bp sequence that resides at -78/-67 of the ie1 promoter decreased the level of promoter activity by about 14-fold, indicating that the 12-bp motif is a critical upstream element of the ie1 promoter for binding of a strong transcription factor to drive the ie1 gene expression in the cells. Further, the 12-bp DNA binding protein was purified from the nuclear proteins of Sf9 cells using DNA affinity chromatography, and was identified as a homologue of the prohibitin2 protein (named as Sf-PHB2) using mass spectrometry. Furthermore, the DNA binding activity of Sf-PHB2 was verified using a super shift analysis.

CONCLUSION

These results support that the Sf-PHB2 is a novel transcription factor that drives WSSV ie1 gene expression by binding to the 12-bp DNA element.

摘要

背景

WSSV 的立即早期基因 ie1 在整个病毒感染周期中高度表达,可能在感染过程中启动病毒复制中发挥核心作用。

结果

本研究通过缺失和突变分析对 ie1 启动子进行了详细表征,以阐明各个启动子元件的作用。得到了以下三个结果:1)ie1 启动子是一种经典的真核启动子,包含启动子基本活性所必需的起始元件(Inr)和 TATA 盒;2)Sp1 位点的突变或截断使启动子活性降低了约 3 倍,表明 Sp1 位点是启动子的重要顺式元件;3)截断位于 ie1 启动子-78/-67 处的 12 个碱基序列使启动子活性降低了约 14 倍,表明该 12 个碱基基序是 ie1 启动子的关键上游元件,可结合强转录因子驱动细胞中 ie1 基因的表达。此外,通过 DNA 亲和层析从 Sf9 细胞的核蛋白中纯化出 12-bp DNA 结合蛋白,并通过质谱鉴定为 prohibitin2 蛋白(命名为 Sf-PHB2)的同源物。进一步通过超迁移分析验证了 Sf-PHB2 的 DNA 结合活性。

结论

这些结果表明 Sf-PHB2 是一种新型转录因子,通过与 12-bp DNA 元件结合来驱动 WSSV ie1 基因的表达。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a08a/3511282/eb3f3d48f275/1743-422X-9-206-1.jpg

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