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在离子交换条件下使用整体固定相纯化鸟嘌呤四链体。

Purification of guanine-quadruplex using monolithic stationary phase under ion-exchange conditions.

机构信息

Amgen Research, Amgen, Inc. 360 Binney Street, Cambridge, MA, 02141, USA.

Amgen Research, Amgen, Inc. One Amgen Center Drive, Thousand Oaks, CA, 91320, USA.

出版信息

J Chromatogr A. 2020 Dec 20;1634:461633. doi: 10.1016/j.chroma.2020.461633. Epub 2020 Oct 28.

Abstract

The current study investigates a method for purification of the G-quadruplex secondary structure, naturally formed by a guanine-rich 21-mer oligonucleotide strand using a monolithic convective interaction media-quaternary amine (CIM-QA) column under ion-exchange conditions. The monolithic support was initially evaluated on a preparative scale against a highly efficient TSKgel SuperQ-5PW ion-exchange support designed for oligonucleotide purification. The CIM analogue demonstrated clear advantages over the particle-based support on the basis of rapid separation times, while also affording high purity of the G-quadruplex. Various parameters were investigated including the type of mobile phase anion, cation, pH and injection load to induce and control quadruplex formation, as well as enhance chromatographic separation and final purity. Potassium afforded the most prominent quadruplex formation, yet sodium allowed for the highest resolution and purity to be achieved with a 30 mg injection on an 8 ml CIM-QA monolithic column. This method was applied to purify in excess of 300 mg of the quadruplex, with excellent retention time precision of under 1% RSD. Native mass spectrometry was utilized to confirm the identity of the intact G-quadruplex under non-denaturing conditions, while ion-pairing reversed-phase methods confirmed the presence of the single-stranded oligonucleotide in high purity (92%) under denaturing conditions. The key advantage of the purification method enables isolation of the G-quadruplex in its native state on a milli-gram scale, allowing structural characterization to further our knowledge of its role and function. The G-quadruplex can also be subsequently denaturated at elevated temperature causing single strand formation if additional reactions are to be pursued, such as annealing to form a duplex, and evaluation in in vitro or in vivo studies.

摘要

本研究探索了一种在离子交换条件下使用整体式对流相互作用介质-四级铵(CIM-QA)柱纯化天然形成的富含鸟嘌呤的 21 -mer 寡核苷酸链的 G-四链体二级结构的方法。整体式载体最初在制备规模上进行了评估,与专为寡核苷酸纯化设计的高效 TSKgel SuperQ-5PW 离子交换载体进行了比较。CIM 类似物在快速分离时间的基础上,与基于颗粒的载体相比具有明显优势,同时也能获得高纯度的 G-四链体。研究了各种参数,包括流动相阴离子、阳离子、pH 值和进样负荷,以诱导和控制四链体形成,以及增强色谱分离和最终纯度。钾能形成最显著的四链体,但钠允许在 30mg 进样量和 8ml CIM-QA 整体柱上实现最高分辨率和纯度。该方法用于纯化超过 300mg 的四链体,保留时间精度优于 1%RSD。在非变性条件下,利用纳升电喷雾质谱法(native mass spectrometry)确认了完整 G-四链体的身份,而离子对反相法(ion-pairing reversed-phase method)在变性条件下确认了单链寡核苷酸的高纯度(92%)。该纯化方法的关键优势在于能够在毫克级规模上分离天然状态的 G-四链体,从而能够进行结构表征,进一步了解其作用和功能。如果要进行进一步的反应,如退火形成双链体,并在体外或体内研究中进行评估,则可以在高温下使 G-四链体变性,形成单链。

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