首页> 美国卫生研究院文献>Nucleic Acids Research >Ball with hair: modular functionalization of highly stable G-quadruplex DNA nano-scaffolds through N2-guanine modification
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Ball with hair: modular functionalization of highly stable G-quadruplex DNA nano-scaffolds through N2-guanine modification

机译:带毛球:通过N2-鸟嘌呤修饰的高度稳定的G-四链体DNA纳米支架的模块化功能化

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摘要

Functionalized nanoparticles have seen valuable applications, particularly in the delivery of therapeutic and diagnostic agents in biological systems. However, the manufacturing of such nano-scale systems with the consistency required for biological application can be challenging, as variation in size and shape have large influences in nanoparticle behavior in vivo. We report on the development of a versatile nano-scaffold based on the modular functionalization of a DNA G-quadruplex. DNA sequences are functionalized in a modular fashion using well-established phosphoramidite chemical synthesis with nucleotides containing modification of the amino (N2) position of the guanine base. In physiological conditions, these sequences fold into well-defined G-quadruplex structures. The resulting DNA nano-scaffolds are thermally stable, consistent in size, and functionalized in a manner that allows for control over the density and relative orientation of functional chemistries on the nano-scaffold surface. Various chemistries including small modifications (N2-methyl-guanine), bulky aromatic modifications (N2-benzyl-guanine), and long chain-like modifications (N2-6-amino-hexyl-guanine) are tested and are found to be generally compatible with G-quadruplex formation. Furthermore, these modifications stabilize the G-quadruplex scaffold by 2.0–13.3 °C per modification in the melting temperature, with concurrent modifications producing extremely stable nano-scaffolds. We demonstrate the potential of this approach by functionalizing nano-scaffolds for use within the biotin–avidin conjugation approach.
机译:功能化的纳米颗粒已经看到了有价值的应用,特别是在生物系统中治疗剂和诊断剂的递送中。然而,由于尺寸和形状的变化对体内纳米粒子的行为有很大的影响,因此具有生物学应用所需的一致性的这种纳米级系统的制造可能具有挑战性。我们报告了基于DNA G-四链体的模块功能化的多功能纳米支架的发展。使用公认的亚磷酰胺化学合成,以具有包含修饰鸟嘌呤碱基的氨基(N2)位置的核苷酸的方式,以模块化的方式对DNA序列进行功能化。在生理条件下,这些序列折叠成明确的G-四链体结构。所得的DNA纳米支架是热稳定的,大小一致的并且以允许控制纳米支架表面上功能化学的密度和相对取向的方式官能化。测试了包括小修饰(N2-甲基-鸟嘌呤),大体积芳香族修饰(N2-苄基-鸟嘌呤)和长链状修饰(N2-6-氨基-己基-鸟嘌呤)在内的各种化学物质,发现它们通常相容与G-四链体形成。此外,这些修饰在熔化温度下每次修饰可在2.0-13.3°C的温度下稳定G-四链体支架,同时进行修饰可产生极其稳定的纳米支架。我们通过对纳米支架进行功能化以证明其在生物素-亲和素缀合方法中的使用来证明这种方法的潜力。

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