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Lipophilic G-quadruplexes: Structural studies, post-assembly modification, and covalent capture.

机译:亲脂性G-四链体:结构研究,组装后修饰和共价捕获。

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摘要

New nanostructures and functional materials are built through the self-assembly of guanosine. Both the size and regiochemistry of these noncovalent structures are controlled. Lipophilic G-quadruplexes are further stabilized through covalent capture techniques. These new nanostructures demonstrate the ability to bind cations and transport monovalent cation through phospholipid membranes.; Diffusion NMR is demonstrated as a valuable technique in characterizing the size of lipophilic G-quadruplexes. Control over the size of self-assembled G-quadruplexes is demonstrated through modifying the guanosine nucleosides and the cation concentration. The solution structure of [G 8] 16 • 4K+ • 4pic- is determined to be a hexadecamer using diffusion NMR. Additionally, G 24 is also shown to form a hexadecamer G-quadruplex, which has an octameric intermediate structure. Two different octamers, a singly and doubly charged octamer, formed by G 29 are elucidated by diffusion NMR. The information gained from the diffusion NMR technique allowed for a better understanding of the self-assembly processes, especially regarding the roles of cation, anion and solvent.; The use of a kinetically controlled exchange reaction to effect regioselective modification of a hydrogen-bonded assembly is discussed. The pseudo-regioselective exchange of isotopically labeled G 35-d into [G 8-h]16 • 4K + • 4pic- is demonstrated. Both the bound anion and cation can control the exchange of ligand into the different layers of a synthetic G-quadruplex. This regioselective exchange process allows for functionalized G-quadruplex structures to be built.; Covalent capture of lipophilic G-quadruplex 60 with reactive groups on the periphery generates a unimolecular G-quadruplex 61. This unimolecular G-quadruplex 61 shows exceptional stability in nonpolar and polar solvents, even without the presence of cations. Furthermore, this unimolecular G-quadruplex transports monovalent cation across phospholipid membranes. The design of transmembrane transporters is of particular interest for their potential as new ion sensors, catalysts and anti-microbial agents.
机译:新的纳米结构和功能材料是通过鸟苷的自组装而构建的。这些非共价结构的大小和区域化学都受到控制。亲脂性G-四链体通过共价捕获技术进一步稳定。这些新的纳米结构证明了结合阳离子和通过磷脂膜转运单价阳离子的能力。扩散NMR被证明是表征亲脂性G-四链体大小的有价值的技术。通过修饰鸟苷核苷和阳离子浓度证明了对自组装G-四链体大小的控制。使用扩散NMR将[G 8] 16•4K +•4pic-的溶液结构确定为六聚体。另外,还显示了G 24形成具有八聚体中间结构的十六聚体G-四链体。通过扩散NMR阐明了由G 29形成的两个不同的八聚体,一个和一个双电荷的八聚体。从扩散核磁共振技术获得的信息可以更好地了解自组装过程,尤其是关于阳离子,阴离子和溶剂的作用。讨论了使用动力学控制的交换反应来实现氢键结合的区域选择性修饰。证明了同位素标记的G 35-d向[G 8-h] 16•4K +•4pic-的伪区域选择性交换。结合的阴离子和阳离子都可以控制配体交换到合成G-四链体的不同层中。这种区域选择性交换过程允许构建功能化的G-四链体结构。亲脂性G-四链体60与外围的反应性基团的共价捕获产生单分子的G-四链体61。该单分子的G-四链体61即使在不存在阳离子的情况下在非极性和极性溶剂中也显示出优异的稳定性。此外,该单分子G-四链体跨磷脂膜运输单价阳离子。跨膜转运蛋白的设计因其作为新型离子传感器,催化剂和抗微生物剂的潜力而特别受关注。

著录项

  • 作者

    Kaucher, Mark Steven.;

  • 作者单位

    University of Maryland, College Park.;

  • 授予单位 University of Maryland, College Park.;
  • 学科 Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 251 p.
  • 总页数 251
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 有机化学;
  • 关键词

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