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Comprehensive analysis of WRN protein interaction network by Mass Spectrometry.

机译:通过质谱对WRN蛋白相互作用网络进行综合分析。

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摘要

Cells that have lost WRN function exhibit a shortened replicative lifespan, accumulation of chromosomal aberrations, and demonstrate sensitivity to a number of chemotherapeutic agents, including DNA Topoisomerase I inhibitor camptothecin (CPT). On organismal level, the lack of this protein results in the progeroid syndrome Werner Syndrome, which is characterized by increased incidence of cancers, cardiovascular disease, cataracts, and other age-associated pathologies.;In this study we examined the network of proteins that associate with WRN protein, and then expanded this picture when the cells were challenged with CPT. We detail the profiling analysis used for unbiased detection of all interacting proteins using LC-MS/MS, followed by data analysis and selection of targets for follow-up.;We then focus on the method development, complexities of data analysis, and application of selected reaction monitoring (SRM), a method for targeted MS. Using RNAi we demonstrate the power of this technique for relative protein quantitation of human proteins WRN and TP53, and a number of small, low-abundance seminal fluid proteins from D.melanogaster flies.;SRM was applied for two studies of the WRN interactome: 1) to partially validate findings of the profiling screen after short-term treatment with CPT, and 2) to describe the dynamics of association of these proteins with WRN as a function of time, by expanding the treatment time course to 6 and 12 hours.;We report on our description of WRN protein interaction complexes in unperturbed cells, and how these interaction complexes become reorganized in response to DNA damage. Our results demonstrate that the newly recruited proteins participate in chromatin remodeling, negative regulation of cell cycle progression, and double-strand break repair. We focus on 40 proteins to test their differential interaction with WRN after 1, 6, and 12 hours of treatment with CPT. We specifically focus on the functional importance of the chromatin-remodeling factors, and present the list of WRN interacting proteins that have emerged as high-priority targets for functional validation. Finally, we discuss how our work has expanded the understanding of the functional roles of WRN, and how targeted, hypothesis-driven application of mass spectrometry can be used to answer complex questions about protein interaction.
机译:失去WRN功能的细胞表现出缩短的复制寿命,染色体畸变积累,并显示出对许多化学治疗剂(包括DNA拓扑异构酶I抑制剂喜树碱(CPT))的敏感性。从机体的角度来看,这种蛋白质的缺乏会导致早老症候群Werner综合征,其特征是癌症,心血管疾病,白内障和其他与年龄相关的病理发生率增加。在这项研究中,我们研究了与蛋白质相关的网络使用WRN蛋白,然后在用CPT攻击细胞时扩大这张图。我们详细介绍了使用LC-MS / MS对所有相互作用蛋白进行无偏检测的分析分析,然后进行了数据分析和后续目标的选择。然后我们重点研究方法的发展,数据分析的复杂性和应用选择反应监测(SRM),这是一种针对目标MS的方法。使用RNAi,我们证明了该技术对人类蛋白质WRN和TP53以及黑腹果蝇的许多小而低丰度精液蛋白质的相对蛋白质定量的能力。; SRM用于WRN相互作用组的两项研究: 1)通过CPT短期治疗后,部分验证轮廓分析的结果; 2)通过将治疗时间范围扩展至6和12小时,描述这些蛋白质与WRN的缔合动力学随时间的变化。 ;我们报告了我们在不受干扰的细胞中WRN蛋白相互作用复合物的描述,以及这些相互作用复合物如何响应DNA损伤而重组。我们的结果表明,新募集的蛋白质参与染色质重塑,细胞周期进程的负调控和双链断裂修复。我们重点研究40种蛋白质,以测试CPT治疗1、6和12小时后与WRN的差异相互作用。我们特别关注染色质重塑因子的功能重要性,并提出了WRN相互作用蛋白的列表,这些蛋白已作为功能验证的高优先目标而出现。最后,我们讨论了我们的工作如何扩展对WRN功能作用的理解,以及如何针对性的,假设假设驱动的质谱应用可以用来回答有关蛋白质相互作用的复杂问题。

著录项

  • 作者

    Glukhova, Veronika A.;

  • 作者单位

    University of Washington.;

  • 授予单位 University of Washington.;
  • 学科 Chemistry Biochemistry.;Biology Cell.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 263 p.
  • 总页数 263
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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