首页> 美国卫生研究院文献>Journal of Virology >A Conserved N-Terminal Domain Mediates Required DNA Replication Activities and Phosphorylation of the Transcriptional Activator IE1 of Autographa californica Multicapsid Nucleopolyhedrovirus
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A Conserved N-Terminal Domain Mediates Required DNA Replication Activities and Phosphorylation of the Transcriptional Activator IE1 of Autographa californica Multicapsid Nucleopolyhedrovirus

机译:保守的N末端域介导所需的DNA复制活性和加利福尼亚州苜蓿多衣壳核多角体病毒的转录激活剂IE1的磷酸化。

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摘要

IE1 is the principal transcriptional regulator of the baculoviruses. Like multifunctional transcription factors of other large DNA viruses, IE1 is an essential, site-specific DNA-binding phosphoprotein that activates virus gene expression and promotes genome replication. To define the poorly understood mechanisms by which IE1 achieves its diverse functions, we identified IE1 domains that contribute to productive infection of Autographa californica multicapsid nucleopolyhedrovirus (AcMNPV), the baculovirus prototype. Site-directed mutagenesis revealed that the N-terminal 23 residues of IE1 are required for origin-specific DNA replication and AcMNPV propagation, but not for DNA-binding-dependent transcriptional activation. Within this defined replication domain, we identified an invariant TPXR/H motif that resembles a consensus cyclin-dependent kinase phosphorylation site. Amino acid substitutions of potential phosphorylation sites within or near this motif caused loss of IE1-mediated DNA replication activity. Remarkably, substitution of the single threonine (residue 15) within the TPXR/H motif caused complete loss of AcMNPV multiplication. The replication domain was required for IE1 phosphorylation. It was also sufficient for conferring phosphorylation of a heterologous protein. Importantly, IE1 hyperphosphorylation coincided exclusively with AcMNPV DNA replication. The temporal regulation of IE1 phosphorylation and the essential nature of the TPXR/H motif suggest that phosphorylation critically alters and possibly activates DNA replication activity of IE1 during infection. The striking conservation of the TPXR/H motif among IE1 proteins further suggests that this molecular switch may be a common mechanism by which the alphabaculoviruses coordinate DNA replication and gene expression by using a single regulator.
机译:IE1是杆状病毒的主要转录调节因子。与其他大型DNA病毒的多功能转录因子一样,IE1是必不可少的,特定于位点的DNA结合磷蛋白,可激活病毒基因表达并促进基因组复制。为了定义人们对IE1实现其各种功能所知甚少的机制,我们鉴定了IE1域,这些域有助于杆状病毒原型Autocalia californica多衣壳核多角体病毒(AcMNPV)的生产性感染。定点诱变显示,IE1的N末端23个残基是起点特异性DNA复制和AcMNPV繁殖所必需的,而DNA结合依赖性转录激活不是必需的。在此定义的复制域内,我们确定了一个不变的TPXR / H基序,它类似于共有的细胞周期蛋白依赖性激酶磷酸化位点。该基序内或附近的潜在磷酸化位点的氨基酸取代导致IE1介导的DNA复制活性的丧失。值得注意的是,TPXR / H基序内单个苏氨酸(残基15)的取代导致AcMNPV倍增的完全丧失。 IE1磷酸化需要复制域。它也足以赋予异源蛋白磷酸化作用。重要的是,IE1过度磷酸化仅与AcMNPV DNA复制相吻合。 IE1磷酸化的时间调控和TPXR / H基序的基本性质表明,在感染过程中,磷酸化会严重改变并可能激活IE1的DNA复制活性。 IE1蛋白中TPXR / H基序的惊人保守性进一步表明,这种分子开关可能是一种常见的机制,通过这种机制,杆状病毒可以通过使用单个调节剂来协调DNA复制和基因表达。

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