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首页> 外文期刊>Biochemistry >'Paper-clip' type triple helix formation by 5 '-d-(TC)(3)T-a(CT)(3)C-b(AG)(3) (a and b=0-4) as a function of loop size with and without the pseudoisocytosine base in the Hoogsteen strand
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'Paper-clip' type triple helix formation by 5 '-d-(TC)(3)T-a(CT)(3)C-b(AG)(3) (a and b=0-4) as a function of loop size with and without the pseudoisocytosine base in the Hoogsteen strand

机译:“纸夹”型三重螺旋形成5'D-(TC)(3)Ta(CT)(3)CB(AG)(3)(A和B = 0-4)作为环尺寸的函数 没有伪异细胞氨酸碱基在hoogsteen strand中

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The formation of a DNA "paper-clip" type triple helix (triplex) with a common sequence 5'-d-(TC)(3)T-a(CT)(3)C-b(AG)(3) (a and b = 0-4) was studied by UV thermal melting experiments and CD spectra, These DNA oligomers form triplexes and duplexes under slightly acidic and neutral conditions, respectively. The stability of the formed triplexes (at pH 4.5) or duplexes (at pH 7.0 or 8.0) does not vary significantly with the size of the loops (a and b = 1-4). At pH 6.0, the tripler stability is, however, a function of a and b. It is also interesting to note that the oligomer 5'-d-(TC)(3)(CT)(3)(AG)(3) (a and b = 0) forms a stable tripler at pH 4.5 with a slightly lower T-m value, due to dissociation of a base triad at one end and a distorted base triad at the other, observed by H-1 NMR. Thus, we have here a model system, 5'-d-(TC)(3)T-a(CT)(3)C-b(AG)(3), that could form a tripler effectively with (a and b = 1-4) and without (a and b = 0) loops under acidic conditions. In addition, the tripler formation of oligomers with replacement of one, two, or three 2'-deoxycytidine in the Hoogsteen strand by either 2'-deoxypseudoisocytidine (D) or 2'-O-methylpseudoisocytidine (M) was also studied in the sequence 5'-d-(TX)(3)T-2(CT)(3)C-2(AG)(3) (where X is C, D, or M). Both CD spectra and UV melting results showed that only D3 [(TX)(3) = (TD)(3)] and M3 [(TX)(3) = (TM)(3)] were able to form the paper-clip structure under both neutral and acidic conditions. This is because the N3H of a pseudoisocytosine base can serve as a proton donor without protonation. We hereby proved that the 2'-deoxypseudoisocytidine, similar to 2'-O-methylpseudoisocytidine, could replace 2'-deoxycytidine in the Hoogsteen strand to provide tripler formation at neutral pH. [References: 33]
机译:用常见的序列5'-d-(Tc)(3)Ta(3)Ta(3)Cb(Ag)(3)(a和b =通过UV热熔实验和CD光谱研究了0-4),这些DNA低聚物分别在微酸性和中性条件下形成三重双链体。形成的三重链(在pH 4.5)或双链体(pH 7.0或8.0)的稳定性不会随着环的尺寸而显着变化(a和b = 1-4)。在pH6.0处,然而,三倍稳定性是a和b的函数。值得注意的是,低聚物5'-D-(TC)(3)(3)(CT)(3)(Ag)(3)(A和B = 0)在pH 4.5下形成稳定的三倍体,略低TM值,由于在一端的碱基三合会和另一端的扭曲基础三合会的解离,由H-1 NMR观察到。因此,我们在这里有一个模型系统,5'-D-(Tc)(3)Ta(CT)(3)Cb(Ag)(3),其可以有效地形成三倍体(A和B = 1-4 (没有(a和b = 0)在酸性条件下环。此外,还通过2'-脱氧型杂糖氨酸(D)或2'-O-甲基哌啶鎓(M)在Hoogsteen Slanc中更换寡聚体的三重聚光体的三倍体形成,其序列5'-D-(TX)(3)T-2(CT)(CT)(3)C-2(Ag)(3)(其中X是C,D或M)。 CD光谱和UV熔化结果都显示出D3 [(TX)(3)=(Td)(3)]和M3 [(Tx)(3)=(3)]能够形成纸张 - 在中性和酸性条件下的夹子结构。这是因为伪异细胞胺碱的N3H可以用作非质子化的质子供体。在此证明,类似于2'-O-甲基屈曲的二氧化铈细胞苷酮,可以替代Hoogsteen Sland中的2'-脱氧胞苷,以在中性pH下提供三倍体形成。 [参考:33]

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