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Nucleic acid constructs for the interrogation of multivalent protein interactions

机译:用于询问多价蛋白质相互作用的核酸构建体

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摘要

Multivalency is nature's way to establish firm and specific interactions when the binding sites of a protein receptor have only low affinity for monovalent ligands. Recently, researchers are increasingly using nucleic acid architectures for multivalent ligand presentation to unravel the mechanisms of multivalency-enhanced interactions and create high affinity binding agents. In contrast to other polymers, nucleic acid materials are capable of accessing a wide variety of rigid three-dimensional structures through the sequence-programed self-assembly of component strands. By controlling the number of ligands and their distances, researchers can construct tailor-made probes for interrogating multivalent interactions with angstrom ngstrom precision. Nucleic acid assemblies have been used to address fundamental questions of multivalency in order to unravel how monovalent interaction strength, scaffold flexibility, distances between interacting sites and spatial arrangement influence the achievable affinity gains. In a slightly different approach, nucleic acid constructs have been applied as chemical dimerizers of protein receptors, to investigate the importance of receptor proximity or construct tools that provide control over biological signal transduction processes. In this review, we discuss multivalent nucleic acid-ligand conjugates in the context of the biological protein receptors they interrogate. We recount pioneering work and seminal studies performed within the last 10 years describing thein vitrointerrogation of proteins recognizing carbohydrate ligands, small molecules, peptides and nucleic acid aptamers and we portray work performed with viruses, cell models, and whole organisms.
机译:当蛋白受体的结合位点仅为单价配体具有低亲和力时,多价是建立固定和特异性相互作用的方式。最近,研究人员越来越多地利用用于多价配体呈现的核酸架构,以解开多价增强的相互作用的机制并产生高亲和力结合剂。与其他聚合物相比,核酸材料能够通过组分股线的序列编程自组装进入各种刚性的三维结构。通过控制配体的数量及其距离,研究人员可以构建测量探针,用于询问与埃斯特朗特NGSTROM精度的多价相互作用。核酸组件已被用于解决多价的基本问题,以解开单价相互作用强度,脚手架柔韧性,相互作用位点与空间排列之间的距离影响可实现的亲和收益。以一种略微不同的方法,核酸构建体已被施用为蛋白质受体的化学二聚体,以研究受体邻近或构建工具的重要性,这些工具提供了对生物信号转导过程的控制。在本文中,我们在他们询问的生物蛋白受体的背景下讨论多价核酸 - 配体缀合物。我们叙述了在过去10年内进行的开创性工作和开创性研究,描述了蛋白质培养蛋白培养蛋白培养碳水化合物配体,小分子,肽和核酸适体,我们用病毒,细胞模型和整个生物进行描绘。

著录项

  • 来源
    《Chemical Society Reviews》 |2020年第19期|共18页
  • 作者

    Yeldell Sean B.; Seitz Oliver;

  • 作者单位

    Humboldt Univ Dept Chem Brook Taylor Str 2 D-12489 Berlin Germany;

    Humboldt Univ Dept Chem Brook Taylor Str 2 D-12489 Berlin Germany;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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