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Development of methods for separation and characterization of proteins from gorgonian sources.

机译:开发了用于分离和鉴定来自高粱来源的蛋白质的方法。

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摘要

Research into the chemical constituents of marine organisms is a relatively new and growing field, given that much of the marine environment has only in the last half century become accessible. Despite the strides that have been made in ocean exploration, the marine biome has still been only barely explored. Much of the impetus for the isolation and identification of chemical entities from marine organisms has been related to their potential as medicines. For a number of reasons, including synthetic efficiency, this has meant that many marine compounds isolated and studied have been small molecules. In recent years, large strides have been made in techniques for the isolation and identification of biological macromolecules, especially proteins. The understanding of these molecules, and their relationship to the biochemical processes of the marine organisms from which they have been isolated, is important not only because of the potential for this information to help in the synthesis of medicines, but because it may help in the recognition of processes that affect the very viability of marine organisms increasingly exposed to anthropogenic threats to their environment. This work consists of four related studies involving the development of methods for the separation and identification of proteins from a number of gorgonian species. Chromatographic and gel based methods were used to isolate an elisabethatriene synthase (ELS) which shows promise as a biotechnological tool for the production of pseudopterosins. A number of gorgonians were screened for the presence of proteins that might have antimicrobial properties, and several organisms were identified that might be of interest in this context. Two-dimensional gel electrophoresis methods were then developed to allow the construction of gel maps for the azooxanthellate gorgonian Leptogorgia minimata and the xoozanthellae gorgonian Pseudopterogorgia elisabethae, the separated proteins were digested and analyzed by LC/MSMS, and the information generated was used to examine the proteome of the organism for functional and phylogenetic relationships. Finally, the gorgonian Eunicea fusca was exposed to several environmental stressors in the laboratory, and the two-dimensional proteomic methods developed were used to examine the effect of the stressors on the organism.
机译:鉴于只有近半个世纪才可以进入海洋环境,因此对海洋生物化学成分的研究是一个相对较新的且仍在不断发展的领域。尽管在海洋探索方面取得了长足的进步,但海洋生物群系仍只是勉强探索过。从海洋生物中分离和鉴定化学实体的许多动力与它们作为药物的潜力有关。由于多种原因,包括合成效率,这意味着许多分离和研究的海洋化合物都是小分子。近年来,在分离和鉴定生物大分子,尤其是蛋白质的技术上已取得了长足的进步。了解这些分子及其与从中分离出来的海洋生物的生化过程之间的关系非常重要,这不仅因为该信息有可能有助于合成药物,而且因为它可能有助于认识到影响越来越多地受到人为环境威胁的海洋生物生存能力的过程。这项工作包括四项相关研究,涉及从多种高粱属物种中分离和鉴定蛋白质的方法的开发。使用了基于色谱和凝胶的方法来分离出伊丽莎白菊酯合酶(ELS),该酶显示出有望作为生产拟蝶呤的生物技术工具。筛选了许多gorgonians可能具有抗微生物特性的蛋白质,并鉴定了在这种情况下可能感兴趣的几种生物。然后开发了二维凝胶电泳方法,以构建偶氮杂蒽酚类鼻咽癌细小钩端螺旋体和黄藻类鼻咽癌假单胞菌的凝胶图谱,通过LC / MSMS对分离的蛋白质进行消化和分析,并将产生的信息用于检查生物体蛋白质组的功能和系统发育关系。最终,在实验室中使高粱属的Eunicea fusca暴露于几种环境胁迫下,并使用开发的二维蛋白质组学方法检查了胁迫对生物体的影响。

著录项

  • 作者

    Jett, Steven W.;

  • 作者单位

    Florida Atlantic University.;

  • 授予单位 Florida Atlantic University.;
  • 学科 Chemistry Biochemistry.;Biology Ecology.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 237 p.
  • 总页数 237
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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