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Visualizing the full landscape of DNA binding specificity for the development of artificial transcription factors.

机译:可视化DNA结合特异性的全貌,用于开发人工转录因子。

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摘要

Complex organisms are able to develop because of the complex regulatory systems that control their gene expression. The first step in this regulation, transcription initiation, is controlled by transcription factors. Transcription factors are modular proteins composed of two distinct domains, the DNA binding domain and the regulatory domain. These molecules are involved in a plethora of important biological processes including embryogenesis, development, cell health, and cancer. Tissue enriched transcription factors Nkx-2.5 and Gata4 are involved in cardiac development and cardiac health.;In this thesis the DNA binding specificity of Nkx-2.5 will be analyzed using a high throughput double stranded DNA platform called Cognate Site Identifier (CSI) arrays (Chapter 2). The full DNA binding specificity of Nkx-2.5 and Nkx-2.5 mutants will be visualized using Sequence Specificity Landscapes (SSLs). In Chapter 3, the definition of binding specificity will be investigated by evaluating a number of different DNA binding folds by CSI and SSLs. CSI and SSLs will also be used to evaluate different pyrrole/imidazole hairpin polyamides in order to better characterize these small molecule DNA binding domains. CSI and SSL data will be applied to the genome in order to explain the biological function an artificial transcription factor. Chapter 4 will discuss the mechanism of nonspecific DNA binding. The historical means of predicting DNA binding will be challenged by utilizing high throughput experiments. The effect of salt concentration on both specific and nonspecific binding will also be investigated. Finally, in Chapter 5, a generation of Protein DNA Dimerizer will be discussed. A PDD that regulates transcription on genomic DNA by binding cooperatively with the heart TF Gata4 will be characterized. These studies provide understanding of, and a means to control, how transcription factors sample the endless sea of DNA in the genome in order to regulate gene expression with such wonderful specificity.
机译:复杂的生物之所以能够发育,是因为复杂的调控系统控制着它们的基因表达。该调节的第一步,转录起始,受转录因子控制。转录因子是由两个不同结构域组成的模块蛋白,即DNA结合结构域和调节结构域。这些分子参与了许多重要的生物学过程,包括胚胎发生,发育,细胞健康和癌症。富含组织的转录因子Nkx-2.5和Gata4参与心脏发育和心脏健康。;本文将使用称为Cognate Site Identifier(CSI)阵列的高通量双链DNA平台分析Nkx-2.5的DNA结合特异性(第2章)。 Nkx-2.5和Nkx-2.5突变体的完整DNA结合特异性将使用序列特异性景观(SSL)进行可视化。在第3章中,将通过CSI和SSL评估许多不同的DNA结合倍数来研究结合特异性的定义。 CSI和SSLs也将用于评估不同的吡咯/咪唑发夹聚酰胺,以更好地表征这些小分子DNA结合域。 CSI和SSL数据将应用于基因组,以解释人工转录因子的生物学功能。第4章将讨论非特异性DNA结合的机制。利用高通量实验将挑战预测DNA结合的历史方法。还将研究盐浓度对特异性和非特异性结合的影响。最后,在第5章中,将讨论蛋白质DNA二聚体的产生。将描述通过与心脏TF Gata4协同结合来调节基因组DNA转录的PDD。这些研究为理解转录因子如何采样基因组中无尽的DNA,从而以如此出色的特异性调节基因表达提供了理解,并提供了一种控制手段。

著录项

  • 作者

    Carlson, Clayton D.;

  • 作者单位

    The University of Wisconsin - Madison.;

  • 授予单位 The University of Wisconsin - Madison.;
  • 学科 Biology Genetics.;Chemistry Biochemistry.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 279 p.
  • 总页数 279
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:37:08

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