拓扑改性生物聚合物:合成环形 DNA 和 RNA 的特性。

Trends in polymer science Pub Date : 1995-12-01
Eric T Kool
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引用次数: 0

摘要

环状核酸分子的化学和生物特性与相应的线性核酸聚合物截然不同。本文介绍了最近用于构建这种环形分子的方法,以及这种拓扑变化可能产生的一些特性。环状核酸具有的不寻常特性包括:在生物介质中具有很强的抗降解能力;与其他核酸的结合亲和力很强;核酸结合的序列选择性很高;与生物大分子的拓扑连接;以及能够以特定的重复核酸和蛋白质聚合物的合成为模板。这些特性可用于生化、医疗诊断和治疗应用。
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Topologically Modified Biopolymers: Properties of Synthetic Circular DNAs and RNAs.

Circular nucleic acid molecules can have chemical and biological properties very different from those of the corresponding linear nucleic acid polymers. Described here are methods used recently for construction of such circular molecules, and some of the properties that can arise from making this topological change. Among the unusual properties found for circular nucleic acids are: strong resistance to degradation in biological media; high affinity of binding to other nucleic acids; high sequence selectivity in nucleic acid binding; topological linkage to biomolecules; and the ability to template the synthesis of specific repeating nucleic acid and protein polymers. These properties may be useful in biochemical, medical diagnostic and therapeutic applications.

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Brownian Motion Simulation of Chain Pullout: Modeling Fracture in Polymer Blends Three approaches that may permit more efficient simulation of the dynamics of atomistic models of polymers Topologically Modified Biopolymers: Properties of Synthetic Circular DNAs and RNAs.
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