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Investigations on DNA intercalation and surface binding by SYBR Green I its structure determination and methodological implications

机译:SYBR Green I对DNA嵌入和表面结合的研究其结构确定和方法学意义

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摘要

The detection of double-stranded (ds) DNA by SYBR Green I (SG) is important in many molecular biology methods including gel electrophoresis, dsDNA quantification in solution and real-time PCR. Biophysical studies at defined dye/base pair ratios (dbprs) were used to determine the structure–property relationships that affect methods applying SG. These studies revealed the occurrence of intercalation, followed by surface binding at dbprs above ∼0.15. Only the latter led to a significant increase in fluorescence. Studies with poly(dA) · poly(dT) and poly(dG) · poly(dC) homopolymers showed sequence-specific binding of SG. Also, salts had a marked impact on SG fluorescence. We also noted binding of SG to single-stranded (ss) DNA, although SG/ssDNA fluorescence was at least ∼11-fold lower than with dsDNA. To perform these studies, we determined the structure of SG by mass spectrometry and NMR analysis to be [2-[N-(3-dimethylaminopropyl)-N-propylamino]-4-[2,3-dihydro-3-methyl-(benzo-1,3-thiazol-2-yl)-methylidene]-1-phenyl-quinolinium]. For comparison, the structure of PicoGreen (PG) was also determined and is [2-[N-bis-(3-dimethylaminopropyl)-amino]-4-[2,3-dihydro-3-methyl-(benzo-1,3-thiazol-2-yl)-methylidene]-1-phenyl-quinolinium]+. These structure–property relationships help in the design of methods that use SG, in particular dsDNA quantification in solution and real-time PCR.
机译:SYBR Green I(SG)对双链(ds)DNA的检测在许多分子生物学方法中都很重要,包括凝胶电泳,溶液中dsDNA定量和实时PCR。在确定的染料/碱基对比率(dbprs)下进行的生物物理研究用于确定影响应用SG方法的结构-性质关系。这些研究揭示了插层的发生,随后在〜0.15以上的dbprs发生了表面结合。只有后者导致荧光显着增加。用聚(dA)·聚(dT)和聚(dG)·聚(dC)均聚物进行的研究表明,SG具有序列特异性结合。同样,盐对SG荧光有显着影响。我们还注意到SG与单链(ss)DNA的结合,尽管SG / ssDNA的荧光至少比dsDNA低约11倍。为了进行这些研究,我们通过质谱和NMR分析确定了SG的结构为[2- [N-(3-二甲基氨基丙基)-N-丙基氨基] -4- [2,3-二氢-3-甲基-(苯并-1,3-噻唑-2-基)-亚甲基] -1-苯基-喹啉]。为了进行比较,还确定了PicoGreen(PG)的结构,其结构为[2- [N-双-(3-二甲基氨基丙基)-氨基] -4- [2,3-二氢-3-甲基-(苯并-1, 3-噻唑-2-基)-亚甲基] -1-苯基-喹啉] + 。这些结构-属性关系有助于设计使用SG的方法,特别是溶液和实时PCR中的dsDNA定量。

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