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Epigenetic regulations in cell wall degradation and regeneration in Oryza sativa.

机译:水稻细胞壁降解和再生的表观遗传规律。

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摘要

It is well known that chromatin components are key players in establishing and maintaining spatial and temporal gene expression in plants, however, little is known about the epigenetic regulation on cell wall degradation and regeneration. This study aimed to (1) investigate the global proteome and phosphoproteome of rice chromatin, and (2) characterize changes in chromatin components and chromatin structure associated with cell wall degradation and regeneration, and (3) characterize the differentially regulated proteins and eventually explore the mechanism.;In this dissertation, we examine proteins copurified with chromatin using both 2-DE gel and shotgun approaches from rice (Oryza sativa) suspension cells. Nine hundred seventy-two distinct protein spots were resolved on 2-DE gels and 509 proteins were identified by MALDI-MS/MS following gel excision, these correspond to 269 unique proteins. When the chromatin copurified proteins are examined using shotgun proteomics, a large number of histone variants in addition to the four common core histones were identified. Furthermore, putative phosphoproteins copurified with chromatin were examined using Pro-Q Diamond phosphoprotein stain and followed by MALDI-MS/MS. Our studies provided new insights into the chromatin composition in plants.;To study the epigenetic regulation of the cell wall degradation and regeneration, we examined cellular responses to the enzymatic removal of the cell wall in rice suspension cells using proteomic approaches. We found that removal of cell wall stimulates cell wall synthesis from multiple sites in protoplasts instead of from a single site as in cytokinesis. Microscopy examination and chromatin decondensation assay further showed that removal of the cell wall is concomitant with substantial chromatin reorganization. Histone post-translational modification studies using both Western blots and isotope labeling assisted quantitative mass spectrometry analyses revealed substantial histone modification changes, particularly H3K18AC and H3K23AC, are associated with the degradation and regeneration of the cell wall. Label-free comparative proteome analyses further revealed that chromatin associated proteins undergo dramatic changes upon removal of the cell wall, particularly cytoskeleton, cell wall metabolism, and stress-response proteins. This study demonstrates that cell wall removal is associated with substantial chromatin change and may lead to stimulation of cell wall synthesis using a novel mechanism.
机译:众所周知,染色质成分是建立和维持植物中时空基因表达的关键因素,但是,关于细胞壁降解和再生的表观遗传调控知之甚少。这项研究旨在(1)研究水稻染色质的整体蛋白质组和磷酸化蛋白质组,(2)表征与细胞壁降解和再生有关的染色质组分和染色质结构变化,(3)表征差异调节的蛋白质并最终探索本论文中,我们使用2-DE凝胶和shot弹法从稻(Oryza sativa)悬浮细胞中研究了与染色质共纯化的蛋白质。在2-DE凝胶上分离了972个不同的蛋白质斑点,凝胶切除后通过MALDI-MS / MS鉴定了509个蛋白质,这些蛋白质对应269个独特的蛋白质。当使用shot弹枪蛋白质组学检查染色质共纯化蛋白时,除了四个常见的核心组蛋白外,还鉴定出大量组蛋白变体。此外,使用Pro-Q Diamond磷蛋白染色剂和MALDI-MS / MS检查与染色质共纯化的推定磷蛋白。我们的研究为植物中的染色质成分提供了新的见识。为了研究细胞壁降解和再生的表观遗传调控,我们使用蛋白质组学方法研究了水稻悬浮细胞中酶促去除细胞壁的细胞反应。我们发现细胞壁的去除刺激了原生质体中多个位置的细胞壁合成,而不是像胞质分裂一样刺激了单个位置。显微镜检查和染色质浓缩试验进一步表明,细胞壁的去除伴随着大量的染色质重组。使用Western印迹和同位素标记辅助定量质谱分析进行的组蛋白翻译后修饰研究表明,组蛋白修饰发生了实质性变化,尤其是H3K18AC和H3K23AC,与细胞壁的降解和再生有关。无标记的比较蛋白质组学分析进一步表明,染色质相关蛋白在去除细胞壁后会发生巨大变化,特别是细胞骨架,细胞壁代谢和应激反应蛋白。这项研究表明,细胞壁的去除与染色质的显着变化有关,并可能导致使用新机制刺激细胞壁的合成。

著录项

  • 作者

    Tan, Feng.;

  • 作者单位

    Mississippi State University.;

  • 授予单位 Mississippi State University.;
  • 学科 Biology Molecular.;Chemistry Biochemistry.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 200 p.
  • 总页数 200
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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