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2'-Fluoro modified nucleic acids: polymerase-directed synthesis, properties and stability to analysis by matrix-assisted laser desorption/ionization mass spectrometry.

机译:2'-氟修饰核酸:聚合酶指导的合成,性质和稳定性,可通过基质辅助激光解吸/电离质谱法进行分析。

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摘要

Fragmentation is a major factor limiting mass range and resolution in the analysis of DNA by matrix-assisted laser desorption/ionization mass spectrometry (MALDI-MS). Protonation of the nucleobase leads to base loss and backbone cleavage by a mechanism similar to the depurination reactions employed in the chemical degradation method of DNA sequencing. In a previous study [Tang,W., Zhu,L. and Smith,L.M. (1997) Anal. Chem ., 69, 302-312], the stabilizing effect of substituting the 24 hydrogen with an electronegative group such as hydroxyl or fluorine was investigated. These 24 substitutions stabilized the N-glycosidic linkage, blocking base loss and subsequent backbone cleavage. For such chemical modifications to be of practical significance, it would be useful to be able to employ the corresponding 24-modified nucleoside triphosphates in the polymerase-directed synthesis of DNA. This would provide an avenue to the preparation of 24-modified PCR fragments and dideoxy sequencing ladders stabilized for MALDI analysis. In this paper methods are described for the polymerase-directed synthesis of 24-fluoro modified DNA, using commercially available 24-fluoronucleoside triphosphates. The ability of a number of DNA and RNA polymerases to incorporate the 24-fluoro analogs was tested. Four thermostable DNA polymerases [Pfu (exo-), Vent (exo-), Deep Vent (exo-) and UlTma] were found that were able to incorporate 24-fluoronucleotides with reasonable efficiency. In order to perform Sanger sequencing reactions, the enzymes' ability to incorporate dideoxy terminators in conjunction with the 24-fluoronucleotides was evaluated. UlTma DNA polymerase was found to be the best of the enzymes tested for this purpose. MALDI analysis of enzymatically produced 24-fluoro modified DNA using the matrix 2,5-dihydroxy benzoic acid showed no base loss or backbone fragmentation, in contrast to the extensive fragmentation evident with unmodified DNA of the same sequence.
机译:在通过基质辅助激光解吸/电离质谱(MALDI-MS)分析DNA时,碎片化是限制质量范​​围和分辨率的主要因素。核碱基的质子化通过类似于DNA测序化学降解方法中所用的脱嘌呤反应的机制导致碱基损失和主链裂解。在以前的研究中[Tang,W。,Zhu,L。和史密斯(1997)肛门。 Chem。,69,302-312],研究了用电负性基团例如羟基或氟取代24个氢的稳定作用。这24个取代基稳定了N-糖苷键,阻断了碱基丢失和随后的主链裂解。为了使这种化学修饰具有实际意义,能够在聚合酶指导的DNA合成中采用相应的24-修饰的核苷三磷酸将是有用的。这将为制备24修饰的PCR片段和稳定用于MALDI分析的双脱氧测序梯提供一条途径。在本文中,描述了使用市售的24-氟核苷三磷酸用于聚合酶指导的24-氟修饰的DNA合成的方法。测试了多种DNA和RNA聚合酶掺入24-氟类似物的能力。发现了四种热稳定的DNA聚合酶[Pfu(exo-),Vent(exo-),Deep Vent(exo-)和UlTma],它们能够以合理的效率掺入24-氟核苷酸。为了进行Sanger测序反应,评估了该酶将双脱氧终止子与24-氟核苷酸结合的能力。已发现UlTma DNA聚合酶是为此目的测试的最好的酶。使用基质2,5-二羟基苯甲酸对酶法制得的24-氟修饰的DNA进行MALDI分析时,没有碱基损失或骨架断裂,这与相同序列的未修饰DNA的明显断裂形成鲜明对比。

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  • 作者

    Ono, T; Scalf, M; Smith, L M;

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  • 年度 1997
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  • 原文格式 PDF
  • 正文语种 en
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