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苜蓿银纹夜蛾核型多角体病毒立即早期1转录调控蛋白的功能剖析

Functional dissection of the Autographa californica nuclear polyhedrosis virus immediate-early 1 transcriptional regulatory protein.

作者信息

Kovacs G R, Choi J, Guarino L A, Summers M D

机构信息

Department of Biochemistry and Biophysics, Texas A&M University, College Station.

出版信息

J Virol. 1992 Dec;66(12):7429-37. doi: 10.1128/JVI.66.12.7429-7437.1992.

Abstract

Autographa californica multicapsid nuclear polyhedrosis virus-infected insect cells express a viral immediate-early transcriptional regulatory protein, IE1, that has been shown by transient-expression assays to stimulate the expression of certain baculovirus delayed-early (DE) promoters and to inhibit the expression of other immediate-early (IE) genes. It is believed that certain DE promoters are activated, in part, by direct interactions between IE1 and enhancer elements located in regions adjacent to these genes. We have used transient cotransfection and DNA-binding assays to examine the function of mutant forms of IE1. Our results indirectly show that IE1 has at least two separable domains that are essential for its role in the modulation of baculovirus gene expression. A domain rich in acidic residues and essential for transactivation is located within the N-terminal 145 amino acids of the polypeptide. A second domain, located in the C-terminal 437 amino acids of IE1, is required for inhibitory and DNA-binding activities. Several nontransactivating IE1 mutants trans-dominantly interfered with wild-type IE1 transactivation of enhancer-linked DE genes. trans-dominant interference was expressed only by IE1 mutants that retained the N-terminal putative acidic activation domain, suggesting that this region may be involved in associations with a factor(s) essential for activation of enhancer-linked genes.

摘要

苜蓿银纹夜蛾多粒包埋核型多角体病毒感染的昆虫细胞表达一种病毒立即早期转录调节蛋白IE1,通过瞬时表达分析表明,该蛋白可刺激某些杆状病毒延迟早期(DE)启动子的表达,并抑制其他立即早期(IE)基因的表达。据信,某些DE启动子部分是通过IE1与位于这些基因相邻区域的增强子元件之间的直接相互作用而被激活的。我们利用瞬时共转染和DNA结合分析来研究IE1突变体形式的功能。我们的结果间接表明,IE1至少有两个可分离的结构域,这些结构域对其在杆状病毒基因表达调控中的作用至关重要。富含酸性残基且对反式激活必不可少的结构域位于该多肽的N端145个氨基酸内。位于IE1 C端437个氨基酸的第二个结构域是抑制和DNA结合活性所必需的。几个无反式激活作用的IE1突变体反式显性干扰了增强子连接的DE基因的野生型IE1反式激活。只有保留N端假定酸性激活结构域的IE1突变体才表现出反式显性干扰,这表明该区域可能参与与激活增强子连接基因所必需的因子的结合。

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