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Functional analysis of the tobacco mosaic virus 126/183-kDa replicase-associated proteins.

机译:烟草花叶病毒126 / 183-kDa复制酶相关蛋白的功能分析。

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摘要

The Tobacco mosaic virus (TMV) 126- and 183-kDa proteins are multi-domain proteins involved in genome replication. In this dissertation, analysis of replicase-mediated cross-protection, identification of protein-protein interactions and biochemical and structural studies of replicase domains were carried out to dissect TMV replicase functions. Specific TMV replicase sequences were expressed in plants using a Potato virus X (PVX) expression vector and tested for their ability to confer protection against challenge TMV infection. Plants expressing different TMV replicase segments displayed either high or low levels of protection. High levels of protection were conferred by segments from the polymerase domain (POL) and required the presence of translatable POL segments. Low levels of protection were conferred by all replicase segments and found to be active even in the absence of protein expression. Results indicate that TMV replicase mediated cross-protection is based upon two mechanisms; low levels of protection dependent on RNA and high levels POL-mediated protection requiring translatable RNAs and possibly protein expression.;To investigate protein-protein interactions in the assembly of the TMV replicase complex, five segments covering different 126-/183-kDa domains were screened via the yeast two-hybrid system against a library of TMV protein segments. One specific interaction between the helicase (HEL) domain and a protein, IRnHEL, covering the C-terminal region of the intervening region (IR) and N-terminal portion of the HEL domain was identified. This interaction was found to be important in virus replication as mutations that completely disrupted the two-hybrid interaction also abolished TMV replication. To investigate the importance of this interaction in assembly of the replicase complex, in vitro expressed proteins covering the HEL/IRnHEL regions were biochemically and structurally characterized. The HEL protein was found to be active in all helicase functions including ATP hydrolysis, RNA-binding and double-stranded RNA unwinding. Gel filtration studies and electron microscopy showed that the HEL protein as well as a protein covering the entire HEL and IRnHEL domains were present in the form of large order multimers. Studying the multimeric states of these proteins would help understand the conformation of the TMV 126- and 183-kDa proteins in the functional replicase complex.
机译:烟草花叶病毒(TMV)126和183-kDa蛋白是涉及基因组复制的多域蛋白。本文对复制酶介导的交叉保护进行了分析,鉴定了蛋白质与蛋白质的相互作用,并对复制酶结构域进行了生化和结构研究,以研究TMV复制酶的功能。使用马铃薯X病毒(PVX)表达载体在植物中表达特定的TMV复制酶序列,并测试其针对攻击性TMV感染提供保护的能力。表达不同TMV复制酶区段的植物显示出高水平或低水平的保护。来自聚合酶结构域(POL)的片段赋予了高水平的保护,并且要求存在可翻译的POL片段。所有复制酶节段均赋予低水平的保护,并且即使在没有蛋白表达的情况下也具有活性。结果表明,TMV复制酶介导的交叉保护是基于两种机制。低水平的保护取决于RNA,高水平的POL介导的保护需要可翻译的RNA以及可能的蛋白质表达。为了研究TMV复制酶复合物装配过程中的蛋白质相互作用,五个片段分别覆盖了126- / 183-kDa结构域通过酵母双杂交系统针对TMV蛋白片段文库进行筛选。鉴定了解旋酶(HEL)结构域和一种蛋白质IRnHEL之间的一种特异性相互作用,该相互作用覆盖了HEL结构域的中间区域(IR)的C端区域和N末端部分。发现这种相互作用在病毒复制中很重要,因为完全破坏了两个杂交相互作用的突变也取消了TMV复制。为了研究这种相互作用在复制酶复合物组装中的重要性,对覆盖HEL / IRnHEL区域的体外表达蛋白进行了生物化学和结构表征。发现HEL蛋白在所有解旋酶功能中均具有活性,包括ATP水解,RNA结合和双链RNA解旋。凝胶过滤研究和电子显微镜显示,HEL蛋白以及覆盖整个HEL和IRnHEL结构域的蛋白均以大分子多聚体的形式存在。研究这些蛋白质的多聚体状态将有助于了解功能性复制酶复合物中TMV 126和183-kDa蛋白的构象。

著录项

  • 作者

    Goregaoker, Sameer Prakash.;

  • 作者单位

    University of Maryland, College Park.;

  • 授予单位 University of Maryland, College Park.;
  • 学科 Biology Molecular.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 152 p.
  • 总页数 152
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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