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Many body theory of stochastic gene expression.

机译:许多人体理论都是随机基因表达的。

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摘要

The regulation of expression states of genes in cells is a stochastic process. The relatively small numbers of protein molecules of a given type present in the cell and the nonlinear nature of chemical reactions result in behaviours, which are hard to anticipate without an appropriate mathematical development. In this dissertation, I develop theoretical approaches based on methods of statistical physics and many-body theory, in which protein and operator state dynamics are treated stochastically and on an equal footing. This development allows me to study the general principles of how noise arising on different levels of the regulatory system affects the complex collective characteristics of systems observed experimentally.; I discuss simple models and approximations, which allow for, at least some, analytical progress in these problems. These have allowed us to understand how the operator state fluctuations may influence the steady state properties and lifetimes of attractors of simple gene systems. I show, that for fast binding and unbinding from the DNA, the operator state may be taken to be in equilibrium for highly cooperative binding, when predicting steady state properties as is traditionally done. Nevertheless, if proteins are produced in bursts, the DNA binding state fluctuations must be taken into account explicitly. Furthermore, even when the steady state probability distributions are weakly influenced by the operator state fluctuations, the escape rate in biologically relevant regimes strongly depends on transcription factor-DNA binding rates.
机译:细胞中基因表达状态的调节是一个随机过程。细胞中存在的给定类型的蛋白质分子数量相对较少,并且化学反应的非线性性质导致行为,如果没有适当的数学发展,这些行为很难预料。在本文中,我基于统计物理学方法和多体理论开发了理论方法,其中蛋白质和算子状态动力学是随机且均等地对待的。这种发展使我能够研究在调节系统的不同级别上产生的噪声如何影响通过实验观察到的系统的复杂集体特征的一般原理。我讨论了简单的模型和近似值,这些模型和近似值至少可以使这些问题的分析取得进展。这些使我们能够了解操作员状态波动如何影响稳态特性和简单基因系统吸引子的寿命。我表明,对于快速结合和与DNA脱键的结合,当按传统方式预测稳态特性时,可以认为操纵员状态处于平衡状态以实现高度协作结合。但是,如果蛋白质是突发性产生的,则必须明确考虑DNA结合状态的波动。此外,即使稳态概率分布受操作者状态波动的影响很小,生物学相关方案中的逃逸率也强烈取决于转录因子-DNA的结合率。

著录项

  • 作者

    Walczak, Aleksandra M.;

  • 作者单位

    University of California, San Diego.;

  • 授予单位 University of California, San Diego.;
  • 学科 Physics Theory.; Biophysics General.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 144 p.
  • 总页数 144
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物物理学;
  • 关键词

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