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核苷和核苷酸的衍生化及色谱分析

Derivatization and chromatography of nucleosides and nucleotides.

作者信息

Patel A B

出版信息

J Chromatogr. 1977 Jan 11;130:115-28. doi: 10.1016/s0021-9673(00)89787-3.

Abstract

The aims of this study were to determine the effect of levels of various substances and reaction by-products, which are formed during hydrolysis of nucleic acids, on the derivatization and chromatography of nucleosides; and to investigate the silylation of mono- and dinucleotides. The effect of NaCl, KCl, MgCl2, NH4Cl, and (NH4)2SO4 on silylation and chromatography of nucleosides was studies at various molar excesses of salt. The response values for all nucleosides were studied at various molar excesses of salt. The response values for all nucleosides were significantly affected at molar excess salt present values (MSP) between 1 and 10 for KCl, NaCl, NH4Cl, (NH4)2SO4 and between 0.1 and 1 for MgCl2. It was noted that thymidine was more sensitive than other nucleosides if silylated in presence of these salts. Two chromatographic peaks at retention temperatures (RT) 240 and 251 were obtained for cytidine at MSP values of 10(-3) for NaCl, KCl, and MgCl2, and 10(-4) for NH4Cl and (NH4)2SO4. In a mixture of nucleosides the RT = 251 peak was used for quantitative analysis of cytidine as the RT = 240 peak elutes with guanosine. Thus, these salts have a significant effect on the gas-liquid chromatography of trimethylsilyl (TMS) cytidine in a mixture of nucleosides, especially the RT = 241 peak. The effect of salts on derivatization can be explained in part as follows: (a) reduced derivatization of nucleosides due to a decreased solubility in the solvent system; (b) formation of TMS anion derivatives, e.g. TMS-SO4, TMS-PO4, with a reduced molar excess of BSTFA; (c) metal chelation by Mg ions or other divalent cations with nucleosides or BSTFA; and/or (d) an increased breakdown of TMS derivatives in presence of salt in the sample or on the top 3 in. of the column packing. Also, experiments were made on the effect of other substances such as Tris, phosphate, alkaline phosphatase, and KCl on completeness of silylation. The individual impurities showed no significant effect on the relative weight response (RWR) values of nucleosides; however, when a mixture was used, significantly lower RWR values were observed for all nucleosides except thymidine when using 1000 molar excess of BSTFA greater than 1000 should be used for silylation and chromatography of nucleosides in an RNA hydrolysate. As reported earlier the best derivatization of nucleosides was achieved using closed tube silylation at 150 degrees for 15 min with 225 molar excess BSTFA and chromatography on 4% OV-11 on Supelcoport. In general, the presence of salts and other substances can be significant in quantitative work, thus it is suggested that they be removed using chromatographic cleanup methods. The stability of nucleosides as a function of concentration of HCl, at room temperature was studied and very low RWR values for nucleosides were obtained when stored for 48 h in greater than 0.001 N HCl. Trimethylsilylation of various nucleotides and dinucleotides were made at 15 min as a function of temperature, and at 150 degrees at different times...

摘要

本研究的目的是确定核酸水解过程中形成的各种物质和反应副产物的水平对核苷衍生化和色谱分析的影响;并研究单核苷酸和二核苷酸的硅烷化作用。在盐的不同摩尔过量情况下,研究了氯化钠、氯化钾、氯化镁、氯化铵和硫酸铵对核苷硅烷化和色谱分析的影响。在盐的不同摩尔过量情况下,研究了所有核苷的响应值。对于氯化钾、氯化钠、氯化铵、硫酸铵,当摩尔过量盐存在值(MSP)在1至10之间,对于氯化镁在0.1至1之间时,所有核苷的响应值均受到显著影响。值得注意的是,如果在这些盐存在的情况下进行硅烷化,胸苷比其他核苷更敏感。当氯化钠、氯化钾和氯化镁的MSP值为10⁻³,氯化铵和硫酸铵的MSP值为10⁻⁴时,胞苷在保留温度(RT)240和251处得到两个色谱峰。在核苷混合物中,由于RT = 240的峰与鸟苷一起洗脱,因此RT = 251的峰用于胞苷的定量分析。因此,这些盐对核苷混合物中三甲基硅基(TMS)胞苷的气液色谱有显著影响,尤其是RT = 241的峰。盐对衍生化的影响部分可以解释如下:(a)由于在溶剂系统中的溶解度降低,核苷的衍生化减少;(b)在BSTFA摩尔过量减少的情况下形成TMS阴离子衍生物,例如TMS - SO₄、TMS - PO₄;(c)镁离子或其他二价阳离子与核苷或BSTFA发生金属螯合;和/或(d)在样品中存在盐或在柱填料顶部3英寸处,TMS衍生物的分解增加。此外,还进行了关于其他物质如Tris、磷酸盐、碱性磷酸酶和氯化钾对硅烷化完整性影响的实验。单个杂质对核苷的相对重量响应(RWR)值没有显著影响;然而,当使用混合物时,除胸苷外,所有核苷的RWR值均显著降低,当使用大于1000的1000摩尔过量BSTFA时,应使用大于1000的量进行RNA水解产物中核苷的硅烷化和色谱分析。如前所述,使用封闭管在150℃下15分钟进行硅烷化,BSTFA摩尔过量为225,并在Supelcoport上的4% OV - 11上进行色谱分析,可实现核苷的最佳衍生化。一般来说,盐和其他物质的存在在定量工作中可能很重要,因此建议使用色谱净化方法将它们去除。研究了核苷在室温下作为盐酸浓度函数的稳定性,当在大于0.001 N的盐酸中储存48小时时,获得了非常低的核苷RWR值。在15分钟内研究了各种核苷酸和二核苷酸的三甲基硅烷化作为温度的函数,并在150℃下在不同时间进行了研究……

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