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Protein-DNA and protein-protein interactions of polycomb group transcriptional repressors from Drosophila melanogaster.

机译:果蝇的多梳基团转录阻遏物的蛋白质-DNA和蛋白质-蛋白质相互作用。

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摘要

Polycomb group (PcG) repressor proteins maintain the spatially restricted expression of homeotic genes during animal development. Biochemical and genetic data support a model where several distinct multimeric complexes act in concert at the chromatin of target genes to block transcription. The studies presented in this thesis explore the molecular properties of PcG proteins from Drosophila melanogaster to better understand the mechanism of PcG repression. PHO, the only known DNA-binding PcG protein, was tested for binding to regulatory regions from homeotic genes. Several binding sites were found in two different elements that correspond to the sequence GCCAT. To test the possibility that PHO recruits other PcG proteins to regulatory elements, a panel of PcG proteins was tested for direct interaction with PHO. No interaction was observed, prompting the suggestion that PHO may instead play a supporting role in PcG function. Two other PcG proteins, SCM and PH, contain an SPM domain. In vitro binding experiments define the SPM domain as a multimerization motif. A collection of mutations was identified in the SPM domain of SCM that affect its binding properties. Several of these mutant domains were tested in a Scm rescue assay. Domains with reduced binding affinity did not support Scm function, proving that the SPM domain is a critical region of the SCM protein. A specificity mutant that retains PH but not SCM binding also failed to rescue in vivo, indicating that SCM-PH binding is not sufficient for function. Biochemical analysis revealed that this mutant SCM protein assembled into a 500 kDa complex along with the majority of endogenous SCM. This result suggests that the SPM domain is required not for complex assembly, but rather for chromosomal localization or for interactions between PcG complexes at the site of repression. Overexpression of an isolated SPM domain was lethal when widely expressed during development, and limited expression produced homeotic defects consistent with PcG loss-of-function. This work is important because it defines a protein interaction domain required for transcriptional repression during animal development, and also provides a set of tools for mechanistic studies of PcG repression.
机译:聚梳组(PcG)阻遏蛋白在动物发育过程中维持同源基因的空间受限表达。生化和遗传数据支持一种模型,其中几种不同的多聚体复合物共同作用于靶基因的染色质以阻止转录。本文的研究探索了 Drosophila melanogaster 中PcG蛋白的分子特性,以更好地了解PcG抑制的机制。 PHO是唯一已知的与DNA结合的PcG蛋白,已测试其与同源基因调控区域的结合。在对应于序列GCCAT的两个不同元件中发现了几个结合位点。为了测试PHO将其他PcG蛋白募集到调控元件的可能性,测试了一组PcG蛋白与PHO的直接相互作用。没有观察到相互作用,提示了PHO可能在PcG功能中起辅助作用。另外两个PcG蛋白SCM和PH包含一个SPM域。体外结合实验将SPM域定义为多聚体基序。在SCM的SPM域中发现了一系列影响其结合特性的突变。在 Scm 拯救实验中测试了其中的几个突变域。结合亲和力降低的域不支持 Scm 功能,证明SPM域是SCM蛋白的关键区域。保留PH但不与SCM结合的特异性突变体也无法在体内拯救,这表明SCM-PH结合不足以发挥功能。生化分析表明,该突变型SCM蛋白与大多数内源性SCM组装成500 kDa的复合体。该结果表明,SPM结构域不是复杂组装所必需的,而是染色体定位或阻抑位点上PcG复合体之间的相互作用所必需的。当在发育过程中广泛表达时,分离的SPM结构域的过表达是致命的,有限的表达会产生与PcG功能丧失一致的同源缺陷。这项工作很重要,因为它定义了动物发育过程中转录阻抑所需的蛋白质相互作用域,并且还提供了一套用于PcG阻抑机理研究的工具。

著录项

  • 作者

    Peterson, Aidan Jon.;

  • 作者单位

    University of Minnesota.;

  • 授予单位 University of Minnesota.;
  • 学科 Biology Molecular.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 173 p.
  • 总页数 173
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子遗传学;
  • 关键词

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