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Components of Sulfolobus islandicus rod-shaped virus 2 replication initiation and genome resolution.

机译:岛线虫杆状病毒2复制起始和基因组解析的组件。

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摘要

Viruses that infect extreme hyperthermophilic archaea are unusual in their morphology, genome structure and sequence, and are model systems for understanding the biochemistry and molecular biology required for life at high temperatures. Sulfolobus islandicus rod shaped virus 2 (SIRV2) infects the archeaon Sulfolobus islandicus at both extreme temperature (70°C--80°C) and acidity (pH 3). Despite ample data describing the SIRV2 genomic sequence, replication intermediates, transcription maps, and three-dimensional protein structures, it is unclear how SIRV2 and host S. islandicus proteins regulate and catalyze essential processes such as DNA replication and transcription.;Several approaches were taken to identify components of the SIRV2 replication initiation complex. Host DNA binding proteins that bind to SIRV2 hairpin DNA were identified by affinity purification. Several SIRV2 proteins (gp1, gp2, and gp31) interact with host replication machinery and may be involved in initiation. Further biochemical characterization of SIRV2 end processing demonstrated hairpin nicking activity in whole and fractionated SIRV2-infected S. islandicus cell extracts but components could not be further purified. A candidate initiation protein, SIRV2gp19, was characterized as a single-strand specific endonuclease which could initiate SIRV2 replication by nicking transient unpaired single-stranded hairpin regions, thus providing a 3'-OH for self-priming DNA synthesis.;Following nick initiation, leading strand DNA synthesis results in two linked SIRV2 genome copies separated by a cruciform structure. I have demonstrated that SIRV2 Holliday junction resolvase (Hjr) resolves dimer concatamers into single copies by cleaving cruciform DNA into linear products with nicked hairpin termini. SIRV2 Hjr was characterized biochemically and has a narrow substrate range and unique cleavage specificity in contrast to previously described cellular, bacteriophage, and viral Hjr. In addition, SIRV2 Hjr forms a complex with SIRV2 coat protein (gp26) and may nucleate viral particle assembly following genome resolution.;In summary, I have identified and characterized several putative components of SIRV2 replication initiation and genome resolution machinery and have proposed a unique model whereby the SIRV2 Holliday junction resolvase plays a dual role: resolving genome dimer concatamers and nucleating virion assembly.
机译:感染极端嗜热古细菌的病毒在形态,基因组结构和序列上是不寻常的,并且是用于了解高温下生命所必需的生物化学和分子生物学的模型系统。细鳞天牛杆状病毒2(SIRV2)在极端温度(70°C--80°C)和酸度(pH 3)下都感染古细菌。尽管有足够的数据描述了SIRV2基因组序列,复制中间体,转录图和三维蛋白质结构,但目前尚不清楚SIRV2和宿主岛链球菌如何调控和催化DNA复制和转录等基本过程。以确定SIRV2复制起始复合体的组成部分。通过亲和纯化鉴定与SIRV2发夹DNA结合的宿主DNA结合蛋白。几种SIRV2蛋白(gp1,gp2和gp31)与宿主复制机制相互作用,并可能参与启动。 SIRV2末端加工的进一步生化特征表明,在完整和分级分离的SIRV2感染的岛链球菌细胞提取物中,发夹有切口活性,但无法进一步纯化组分。候选起始蛋白SIRV2gp19被表征为单链特异性核酸内切酶,可通过刻划瞬态未配对的单链发夹区域来启动SIRV2复制,从而为自引发DNA合成提供3'-OH。前导链DNA合成导致两个相连的SIRV2基因组拷贝被十字形结构分开。我已经证明,SIRV2霍利迪连接解酶(Hjr)通过将十字形DNA切割成带有缺口发夹末端的线性产物,从而将二聚体分解为单拷贝。与先前描述的细胞,噬菌体和病毒Hjr相比,SIRV2 Hjr​​具有生化特征,具有狭窄的底物范围和独特的切割特异性。此外,SIRV2 Hjr​​与SIRV2外壳蛋白(gp26)形成复合物,并可能在基因组解析后使病毒颗粒组装成核。概括地说,我已经鉴定并表征了SIRV2复制起始和基因组解析机制的几种假定成分,并提出了独特的方法SIRV2霍利迪连接解析酶起着双重作用的模型:解析基因组二聚体协同子和成核的病毒粒子装配。

著录项

  • 作者

    Gardner, Andrew F.;

  • 作者单位

    Boston University.;

  • 授予单位 Boston University.;
  • 学科 Chemistry Biochemistry.;Biology Virology.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 211 p.
  • 总页数 211
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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