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Synthesis and enzymatic studies of selenium derivatized nucleosides, nucleotides and nucleic acids.

机译:硒衍生的核苷,核苷酸和核酸的合成和酶学研究。

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摘要

Nucleoside 5'-triphosphates are the building blocks to synthesis of nucleic acids. Nucleic acids (RNA and DNA) participate in many important biological functions in living systems, including genetic information storage, gene expression, and catalysis. Nucleoside 5'-triphosphates have many important therapeutic and diagnostic applications. To understand how these triphosphates are utilized in living systems, numerous synthetic mimics have been prepared and used as active metabolites of certain drugs and molecular probes. Over the years, nucleic acids have been modified at the nucleobase, sugar moiety and phosphate backbone with the aim of understanding their structures and functions. We have site-specifically replaced selected oxygen atoms of nucleosides and nucleotides with selenium atom in order to enzymatically synthesize selenium-derivatized DNAs for obtaining insights into the DNA flexibility, duplex recognition and stability. Although triphosphates have important biological and medicinal significance, they are however, very difficult to synthesize and isolate in high purity and yield. There are many approaches to the synthesis of nucleoside 5'-triphosphates, but there is no general strategy that allows simple and direct synthesis of nucleoside triphosphates. To face the challenges, we have developed a new approach in the absence of protecting groups to quickly and efficiently synthesized native deoxynucleoside 5'-triphosphates and deoxynucleoside 5'-(alpha-P-seleno)triphosphates.;Syntheses of the triphosphates containing selenium-derivatized nucleobases were also successfully accomplished. After replacing the oxygen atoms at the 4-position of thymidine and uridine, and the 6-position of guanosine, we observed most strikingly, a large bathrochromic shift of over 100 nm, relative to their native counterparts of UV absorbance of 260 nm. Consequently, the synthesized selenium base modified triphosphates are yellow. We also synthesized 2-selenothymidine and 5-methylseleno thymidine 5'-triphosphates. We conducted stability study on the colored 4-selenothymidine and used the 5'-triphosphate analog ( 4-SeTTP) as substrate for polymerase recognition. The Klenow polymerase incorporated the 4-SeTTP with efficiency equal to that of the native counterpart. Finally, 4-SeTTP was used to demonstrate UV-damage resistance of selenium-derivatized DNAs and plasmid.;INDEX WORDS: Nucleoside 5'-triphosphates, Nucleic acids, Selenium-derivatized DNA, DNA flexibility, Duplex recognition, Stability, Deoxynucleoside 5'-(alpha-P-seleno)triphosphates, Bathrochromic shift, Colored 4-selenothymidine, Klenow polymerase, Plasmid
机译:核苷5'-三磷酸酯是核酸合成的基础。核酸(RNA和DNA)参与生命系统的许多重要生物学功能,包括遗传信息存储,基因表达和催化。核苷5'-三磷酸酯具有许多重要的治疗和诊断应用。为了了解这些三磷酸酯如何在生命系统中使用,已经制备了许多合成模拟物并将其用作某些药物和分子探针的活性代谢物。多年以来,为了了解核酸的结构和功能,已经对核酸的碱基,糖部分和磷酸骨架进行了修饰。我们已经用硒原子在位点上取代了核苷和核苷酸中选定的氧原子,以便酶促合成硒衍生的DNA,从而深入了解DNA的灵活性,双链体识别和稳定性。尽管三磷酸酯具有重要的生物学和医学意义,但是它们很难以高纯度和高产率合成和分离。有许多合成核苷5'-三磷酸的方法,但是没有通用的策略可以简单直接地合成三磷酸核苷。为应对挑战,我们开发了一种在没有保护基团的情况下快速有效地合成天然脱氧核苷5'-三磷酸和脱氧核苷5'-(α-P-硒基)三磷酸的新方法。含硒三磷酸的合成衍生核碱基也已成功完成。在替换了胸苷和尿苷的4位和鸟苷的6位上的氧原子后,我们最明显地观察到,相对于其天然的260 nm紫外线吸收峰,其红移现象大,超过100 nm。因此,合成的硒基改性的三磷酸酯是黄色的。我们还合成了2-硒代胸苷和5-甲基硒代胸苷5'-三磷酸酯。我们对有色的4-硒代胸苷进行了稳定性研究,并使用5'-三磷酸酯类似物(4-SeTTP)作为聚合酶识别的底物。 Klenow聚合酶掺入4-SeTTP的效率与天然对应物相同。最后,使用4-SeTTP来证明硒衍生的DNA和质粒对紫外线的抵抗力。索引词:核苷5'-三磷酸,核酸,硒衍生的DNA,DNA柔韧性,双链识别,稳定性,脱氧核苷5' -(α-P-硒代)三磷酸酯,红移,有色4-硒代胸苷,Klenow聚合酶,质粒

著录项

  • 作者单位

    Georgia State University.;

  • 授予单位 Georgia State University.;
  • 学科 Chemistry Biochemistry.;Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 230 p.
  • 总页数 230
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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