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一种大型抗病毒发夹型聚酰胺与 DNA 结合的热力学和位置化学计量学。

Thermodynamics and site stoichiometry of DNA binding by a large antiviral hairpin polyamide.

机构信息

Department of Chemistry & Biochemistry, University of Missouri St. Louis, St. Louis, MO, 63121, USA.

Department of Chemistry & Biochemistry, University of Missouri St. Louis, St. Louis, MO, 63121, USA.

出版信息

Biochimie. 2019 Feb;157:149-157. doi: 10.1016/j.biochi.2018.11.013. Epub 2018 Nov 24.

Abstract

PA1 (dIm-PyPyβPyPyPy-γ-PyPyβPyPyPyPyβ-Ta) is a large (14-ring) hairpin polyamide that was designed to recognize the DNA sequence 5'-WGW-3', where W is either A or T. As is common among the smaller 6-8-ring hairpin polyamides (PAs), it binds its target recognition sequence with low nM affinity. However, in addition to its large size, it is distinct from these more extensively characterized PAs in its high tolerance for mismatches and antiviral properties. In ongoing attempts to understand the basis for these distinctions, we conducted thermodynamics studies of PA1-DNA interactions. The temperature dependence of binding affinity was measured using TAMRA-labeled hairpin DNAs containing a single target sequence. PA1 binding to either an ATAT/TATA or an AAAA/TTTT pattern is consistently entropically driven. This is in contrast to the A/T pattern-dependent driving forces for DNA binding by netropsin, distamycin, and smaller hairpin polyamides. Analysis of the salt dependence of PA1-DNA binding reveals that within experimental error, there is no dependence on ionic strength, indicating that the polyelectrolyte effect does not contribute to PA1-DNA binding energetics. This is similar to that observed for smaller PAs. PA1-DNA recognition sequence binding stoichiometries were determined at both nM (fluorescence) and μM (circular dichroism) concentrations. With all sequences and under both conditions, multiple PA1 molecules bind the small DNA hairpin that contains only a single recognition sequence. Implications for these observations are discussed.

摘要

PA1(dIm-PyPyβPyPyPy-γ-PyPyβPyPyPyPyβ-Ta) 是一种大型(14 元环)发夹状聚酰胺,旨在识别 DNA 序列 5'-WGW-3',其中 W 可以是 A 或 T。与较小的 6-8 元环发夹状聚酰胺 (PA) 一样,它以低纳摩尔亲和力结合其靶标识别序列。然而,除了其尺寸较大之外,它还具有高度的错配容忍度和抗病毒特性,这使其与这些经过广泛表征的 PA 不同。在为了解这些区别的基础而进行的持续尝试中,我们进行了 PA1-DNA 相互作用的热力学研究。使用含有单个靶序列的 TAMRA 标记的发夹 DNA 测量了结合亲和力的温度依赖性。PA1 与 ATAT/TATA 或 AAAA/TTTT 模式的结合始终是熵驱动的。这与 Netropsin、Distamycin 和较小的发夹聚酰胺的 A/T 模式依赖性 DNA 结合驱动力形成对比。对 PA1-DNA 结合的盐依赖性分析表明,在实验误差范围内,对离子强度没有依赖性,表明聚电解质效应不会影响 PA1-DNA 结合的能量学。这与观察到的较小的 PA 类似。在纳摩尔(荧光)和微摩尔(圆二色性)浓度下,确定了 PA1-识别序列的 DNA 结合化学计量。对于所有序列并在两种条件下,多个 PA1 分子结合仅包含单个识别序列的小 DNA 发夹。讨论了这些观察结果的含义。

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