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Studies on the Site and Mode of TMPyP4 Interactions with Bcl-2 Promoter Sequence G-Quadruplexes

机译:TMPyP4与Bcl-2启动子序列G-四链体相互作用的位点和模式研究

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摘要

TMPyP4 (Mesotetra(N-methyl-4-pyridyl)porphine) is known to have a high affinity for G-quadruplex DNA. However, there is still some controversy over the exact site(s) and mode(s) of TMPyP4 binding to G-quadruplex DNA. We examined TMPyP4 interactions with seven G-quadruplex forming oligonucleotides. The parent oligonucleotide is a 27-mer with a wild-type (WT) G-rich sequence of the Bcl-2 P1 promoter mid-region (5′-d(CGG GCG CGG GAG GAA GGG GGC GGG AGC-3′)). This sequence folds into at least three unique loop isomer quadruplexes. The two mutant oligonucleotides used in this study are shorter (23-mer) sequences in which nonquadruplex core bases were eliminated and two different (-G-G-) → (-T-T-) substitutions were made to restrict the folding complexity. The four additional mutant oligonucleotides were labeled by substituting a 2-aminopurine (2-AP) base for an A or G in either the first three-base lateral loop or the second five- or seven-base lateral loop (depending on the G→T mutation positions). Spectroscopic and microcalorimetric studies indicate that four molecules of TMPyP4 can be bound to a single G-quadruplex. Binding of the first two moles of TMPyP4 appears to occur by an end or exterior mode (K ≈ 1 × 107 M−1), whereas binding of the third and fourth moles of TMPyP4 appears to occur by a weaker, intercalative binding mode (K ≈ 1 × 105 M−1). As the mid-loop size decreases from seven to five bases, end binding occurs with significantly increased affinity. 2-AP-labeled Bcl-2 promoter region quadruplexes show increased fluorescence of the 2-AP base on addition of TMPyP4. The change in fluorescence for 2-AP bases in the second half of the TMPyP4 titration lends support to our previous speculation regarding the intercalative nature of the weaker binding mode.
机译:已知TMPyP4(Mesotetra(N-甲基-4-吡啶基)卟啉)对G-四链体DNA具有高亲和力。然而,关于TMPyP4与G-四链体DNA结合的确切位点和模式仍存在一些争议。我们检查了TMPyP4与七个G四联体形成寡核苷酸的相互作用。亲本寡核苷酸是27-mer,具有Bcl-2 P1启动子中部区域(5'-d(CGG GCG CGG GAG GAA GGG GGC GGG AGC-3')的野生型(WT)富G序列。 。该序列折叠成至少三个独特的环状异构体四链体。在这项研究中使用的两个突变寡核苷酸是较短的(23-mer)序列,其中消除了非四链体核心碱基,并且进行了两个不同的(-G-G-)→(-T-T-)取代以限制折叠的复杂性。通过在第一个三碱基侧向环或第二个五碱基或七碱基侧向环(取决于G→ T突变位置)。光谱和微量量热研究表明,TMPyP4的四个分子可以与单个G四联体结合。前两个摩尔的TMPyP4的结合似乎是通过末端或外部模式(K≈1×10 7 M -1 )发生的,而第三和第四个摩尔的TMPyP4似乎是通过较弱的插入结合模式(K≈1×10 5 M -1 )发生的。随着中环大小从7个碱基减少到5个碱基,末端结合的亲和力显着增加。 2-AP标记的Bcl-2启动子区域四链体在添加TMPyP4后显示2-AP的荧光增强。 TMPyP4滴定后半部分中2-AP碱基的荧光变化为我们先前关于弱结合模式的插入性质的推测提供了支持。

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