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Genome-Scale Metabolic Network Reconstruction and Constraint-Based Flux Balance Analysis of Toxoplasma gondii.

机译:弓形虫的基因组规模代谢网络重构和基于约束的通量平衡分析。

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摘要

The increasing prevalence of apicomplexan parasites such as Plasmodium, Toxoplasma, and Cryptosporidium represents a significant global healthcare burden. Treatment options are increasingly limited due to the emergence of new resistant strains. We postulate that parasites have evolved distinct metabolic strategies critical for growth and survival during human infections, and therefore susceptible to drug targeting using a systematic approach. I developed iCS306, a fully characterized metabolic network reconstruction of the model organism Toxoplasma gondii via extensive curation of available genomic and biochemical data. Using available microarray data, metabolic constraints for six different clinical strains of Toxoplasma were modeled. I conducted various in silico experiments using flux balance analysis in order to identify essential metabolic processes, and to illustrate the differences in metabolic behaviour across Toxoplasma strains. The results elucidate probable explanations for the underlying mechanisms which account for the similarities and differences among strains of Toxoplasma, and among species of Apicomplexa.
机译:疟原虫,弓形虫和隐孢子虫等apiplexplexan寄生虫的患病率上升,代表了全球医疗保健的沉重负担。由于新的耐药菌株的出现,治疗选择越来越受到限制。我们假设寄生虫已经进化出了独特的代谢策略,这些策略对于人类感染期间的生长和生存至关重要,因此易于使用系统方法靶向药物。我开发了iCS306,这是通过广泛地整理可用的基因组和生化数据来对模型生物弓形虫进行的全特征代谢网络重建。利用可获得的微阵列数据,对六种弓形虫临床菌株的代谢限制进行了建模。我使用流量平衡分析进行了各种计算机模拟实验,以确定基本的代谢过程,并阐明了弓形虫菌株之间代谢行为的差异。该结果阐明了可能的解释,这些解释解释了弓形虫菌株之间以及复杂的种之间的相似性和差异。

著录项

  • 作者

    Song, Carl Yulun.;

  • 作者单位

    University of Toronto (Canada).;

  • 授予单位 University of Toronto (Canada).;
  • 学科 Biology Genetics.
  • 学位 M.Sc.
  • 年度 2012
  • 页码 105 p.
  • 总页数 105
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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