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Thermodynamics and Enzymatic Polymerization of Artificial Metallo-Nucleic Acids AND Investigation of Duplex Formation between GNA and RNA.

机译:人工金属-核酸的热力学和酶促聚合反应以及GNA和RNA之间双链体形成的研究。

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摘要

The exquisite structures and properties of nucleic acids enable them to function in information storage and transfer. Efforts to extend encoding and copying of genetic information to unnatural nucleobases have been made over the years for potential usage in molecular engineering, in addition to expansion of the genetic alphabet. We have explored alternative base pairing through metal complexation in the DNA double helix. Synthetic nucleobase deoxyribosides of purine-6-carboxylate (PurC) and purine-2,6-dicarboxylate (PurDC) deoxyribosides were found to pair with their complementary nucleobases, PurC, 6-(2'-pyridyl)-purine (PurP) and 3-pyridyl (3-Py) deoxyribosides, through preferential binding to Cu 2+. All of the metallo base-pairs exhibited high thermal stability in DNA duplexes, and mismatched base-pairs between unnatural and natural nucleobases were highly destabilizing.;The DNA stabilizing forces of the metal-mediated base-pairs were utilized to guide polymerization of unnatural nucleotides in the presence of DNA polymerases. Incorporation of PurC or PurDC mononucleotide against its complementary base in the template was Cu2+ concentration dependent, suggesting that nucleotide insertion occurred via metallo base-pair formation and that polymerases can recognize this new metal-mediated base pairing. Although no enzymatic selectivity for incorporation of unnatural nucleotides over natural nucleotides was observed, sequential incorporation of PurDC and natural nucleotides allowed for the incorporation and subsequent extension of metallo base-pairs by DNA polymerases. These results are significant in that metal-mediated unnatural base-pair involving replication is unprecedented.;Artificial nucleic acids based on simplified backbones are of great interest as a potential evolutionary progenitor of RNA. While glycol nucleic acid (GNA), which has an acyclic three-carbon backbone and follows the Watson-Crick base pairing rules with higher thermal stability than DNA or RNA has been considered as a candidate progenitor of RNA, the evolutionary relationship between GNA and RNA is unclear due to limited ability of GNA to form heteroduplexes with RNA. We investigated nonenzymatic oligomerization of RNA on GNA templates. However, GNA templates failed to direct oligomerization of activated ribonucleotide monomers. Also, cross-pairing experiments with inosine GNA, a guanosine analog, and cytidine in RNA did not show an improvement of the cross-pairing properties between GNA and RNA.
机译:核酸的精致结构和特性使它们能够在信息存储和传递中发挥作用。多年来,除了扩展遗传字母之外,已经进行了将遗传信息的编码和复制扩展到非天然核碱基的努力,以用于分子工程中。我们已经探索了通过DNA双螺旋中金属络合的替代碱基配对。发现嘌呤-6-羧酸盐(PurC)和嘌呤-2,6-二羧酸盐(PurDC)脱氧核糖苷的合成核碱基脱氧核糖苷与它们的互补核碱基PurC,6-(2'-吡啶基)-嘌呤(PurP)和3配对-吡啶基(3-Py)脱氧核糖苷,通过优先与Cu 2+结合。所有金属碱基对在DNA双链体中均表现出高的热稳定性,非天然和天然核碱基之间错配的碱基对高度失稳。;利用金属介导的碱基对的DNA稳定力来指导非天然核苷酸的聚合在DNA聚合酶存在下。 PurC或PurDC单核苷酸相对于模板中互补碱基的掺入取决于Cu2 +的浓度,这表明核苷酸的插入是通过金属碱基对的形成发生的,聚合酶可以识别这种新的金属介导的碱基对。尽管没有观察到与天然核苷酸相比非天然核苷酸掺入的酶促选择性,但是PurDC和天然核苷酸的顺序掺入允许DNA聚合酶的掺入和随后的金属碱基对的延伸。这些结果是有意义的,因为涉及复制的金属介导的非天然碱基对是空前的。基于简化骨架的人工核酸作为RNA的潜在进化祖细胞引起了人们的极大兴趣。虽然具有无环三碳主链且遵循Watson-Crick碱基配对规则且具有比DNA或RNA高的热稳定性的乙二醇核酸(GNA)被认为是RNA的候选祖先,但GNA与RNA之间的进化关系由于GNA与RNA形成异源双链体的能力有限,因此尚不清楚。我们研究了GNA模板上RNA的非酶促寡聚。但是,GNA模板无法指导活化的核糖核苷酸单体的寡聚。同样,RNA中肌苷GNA,鸟苷类似物和胞苷的交叉配对实验未显示GNA与RNA之间的交叉配对特性有所改善。

著录项

  • 作者

    Kim, Eun Kyong.;

  • 作者单位

    University of California, Riverside.;

  • 授予单位 University of California, Riverside.;
  • 学科 Biochemistry.;Inorganic chemistry.;Organic chemistry.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 247 p.
  • 总页数 247
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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