John Deborah M, Weeks Kevin M
Department of Chemistry, University of North Carolina, Chapel Hill, NC 27599-3290, USA.
Biochemistry. 2002 May 28;41(21):6866-74. doi: 10.1021/bi025611d.
2'-Amine-substituted nucleotides in hybridized duplexes can be chemically tagged in an acylation reaction that is faster for mismatched or flexible nucleotides than for residues constrained by base pairing. Here we explore mismatch and hybridization detection using probe oligodeoxynucleotides containing single 2'-aminocytidine or -uridine nucleotides annealed to DNA or RNA targets under nonstringent conditions, below T(m). Consistent with a mechanism in which 2'-amine acylation is gated by local nucleotide flexibility, we find that efficient acylation is correlated with formation of weaker or fewer hydrogen bonds in base pair mismatches. Using 2'-aminocytidine-containing probes annealed to both DNA and RNA targets, mismatches are reliably detected as rapid selective acylation of the 2'-amine group in two sequence contexts. For probe oligonucleotides containing 2'-aminouridine residues, good discrimination between U-A base pairs and U-G mismatches could be obtained for DNA-DNA but not for DNA-RNA duplexes upon the introduction of a single 2'-O-Me group 5' to the 2'-amino nucleotide. The 2'-O-Me group introduces a structural perturbation, presumably to a more A-form-like structure, that exaggerates local flexibility at mismatches in DNA strands. Thus, 2'-amine acylation can be used to interrogate all possible mismatches in DNA-DNA duplexes and mismatches involving 2'-amine-substituted cytidine nucleotides in DNA-RNA heteroduplexes. Applications of this chemistry include detecting and chemically proofreading single nucleotide polymorphisms in both DNA and RNA targets and quantifying absolute amounts of RNA.
杂交双链体中的2'-胺基取代核苷酸可在酰化反应中进行化学标记,该反应对于错配或柔性核苷酸比对通过碱基配对受限的残基更快。在这里,我们探索使用含有单个2'-氨基胞嘧啶或 - 尿嘧啶核苷酸的探针寡脱氧核苷酸在低于T(m)的非严格条件下与DNA或RNA靶标退火来进行错配和杂交检测。与2'-胺酰化由局部核苷酸柔性控制的机制一致,我们发现有效的酰化与碱基对错配中较弱或较少氢键的形成相关。使用与DNA和RNA靶标都退火的含2'-氨基胞嘧啶的探针,在两种序列背景下,错配可可靠地检测为2'-胺基团的快速选择性酰化。对于含有2'-氨基尿苷残基的探针寡核苷酸,在2'-氨基核苷酸的5'端引入单个2'-O-甲基基团后,对于DNA-DNA双链体可以很好地区分U-A碱基对和U-G错配,但对于DNA-RNA双链体则不行。2'-O-甲基基团引入了结构扰动,大概是形成了更类似A-型的结构,这夸大了DNA链中错配处的局部柔性。因此,2'-胺酰化可用于检测DNA-DNA双链体中所有可能的错配以及DNA-RNA异源双链体中涉及2'-胺取代胞嘧啶核苷酸的错配。这种化学方法的应用包括检测和化学校对DNA和RNA靶标中的单核苷酸多态性以及定量RNA的绝对量。