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整体式阴离子交换色谱中DNA及其他大型生物分子的结合位点与洗脱行为

Binding site and elution behavior of DNA and other large biomolecules in monolithic anion-exchange chromatography.

作者信息

Yamamoto Shuichi, Yoshimoto Noriko, Tarmann Christina, Jungbauer Alois

机构信息

Bio-Process Engineering Laboratory, School of Engineering and Graduate School of Medicine, Yamaguchi University, Tokiwadai, Ube 755-8611, Japan.

出版信息

J Chromatogr A. 2009 Mar 27;1216(13):2616-20. doi: 10.1016/j.chroma.2009.01.060. Epub 2009 Jan 23.

Abstract

Our previous study has shown that there is a good correlation between the number of charges of DNA (from trimer to 50-mer) and the number of binding sites B in electrostatic interaction chromatography (ion-exchange chromatography, IEC). It was also found that high salt (NaCl) concentration is needed to elute large DNAs (>0.6M). In this paper we further performed experiments with large DNAs (up to 95-mer polyT and polyA) and charged liposome particles of different sizes (ca. 30, 50 and 100 nm) with a monolithic anion-exchange disk in order to understand the binding and elution mechanism of very large charged biomolecules or particles. The peak salt (NaCl) concentration increased with increasing DNA length. However, above 50-mer DNAs the value did not increase significantly with DNA length (ca. 0.65-0.70 M). For liposome particles of different sizes the peak salt concentration (ca. 0.62 M) was similar and slightly lower than that for large DNAs (ca. 0.65-0.70 M). The binding site values (ca. 25-30) are smaller than those for large DNAs. When arginine was used as a mobile phase modulator, the elution position of polyA and polyT became very close whereas in NaCl gradient elution polyT appeared after polyA eluted. This was mainly due to suppression of hydrophobic interaction by arginine.

摘要

我们之前的研究表明,在静电相互作用色谱法(离子交换色谱法,IEC)中,DNA的电荷数(从三聚体到50聚体)与结合位点数B之间存在良好的相关性。还发现洗脱大的DNA(>0.6M)需要高盐(NaCl)浓度。在本文中,我们进一步使用整体式阴离子交换盘对大的DNA(长达95聚体的聚T和聚A)以及不同大小(约30、50和100nm)的带电脂质体颗粒进行了实验,以了解非常大的带电生物分子或颗粒的结合和洗脱机制。峰值盐(NaCl)浓度随DNA长度增加而增加。然而,对于50聚体以上的DNA,该值随DNA长度增加并不显著(约0.65 - 0.70M)。对于不同大小的脂质体颗粒,峰值盐浓度(约0.62M)相似且略低于大的DNA(约0.65 - 0.70M)。结合位点数(约25 - 30)比大的DNA的结合位点数小。当使用精氨酸作为流动相调节剂时,聚A和聚T的洗脱位置变得非常接近,而在NaCl梯度洗脱中,聚T在聚A洗脱后出现。这主要是由于精氨酸对疏水相互作用的抑制作用。

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