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DNA三链体中心链中5-氨基尿嘧啶(U(#))的识别:不同第三条链碱基的取向选择性结合。

Recognition of 5-aminouracil (U(#)) in the central strand of a DNA triplex: orientation selective binding of different third strand bases.

作者信息

Rana V S, Ganesh K N

机构信息

Division of Organic Chemistry (Synthesis), National Chemical Laboratory, Pune 411 008, India.

出版信息

Nucleic Acids Res. 2000 Mar 1;28(5):1162-9. doi: 10.1093/nar/28.5.1162.

Abstract

A necessary feature of the natural base triads for triplex formation is the requirement of a purine (A or G) in the central position, since only these provide sets of two hydrogen bond donors/acceptors in the major groove of the double helix. Pyrimidine bases devoid of this feature have incompatible complementarity and lead to triplexes with lower stability. This paper demonstrates that 5-aminouracil (U#) (I), a pyrimidine nucleobase analogue of T in which 5-methyl is replaced by 5-amino group, with hydrogen bonding sites on both sides, is compatible in the central position of triplex triad X*U# x A, where X = A/G/C/T/2-aminopurine (AP), and * and x represent Hoogsteen and Watson-Crick hydrogen bonding patterns respectively. A novel recognition selectivity based on the orientation (parallel/antiparallel) of the third strand purines A, G or AP with A in the parallel motif (A(p)*U# x A), and G/AP in the antiparallel motif (G(ap)/AP(ap)*U# x A) is observed. Similarly for pyrimidines in the third strand, C is accepted only in a parallel mode (C(p)*U(#) x A). Significantly, T is recognised in both parallel and antiparallel modes (T(p)/T(ap)*U(#) x A), with the antiparallel mode being stable compared to the parallel one. The 'U(#)' triplexes are also more stable than the corresponding control 'T' triplexes. The results expand the lexicon of triplex triads with a recognition motif consisting of pyrimidine in the central strand.

摘要

三链体形成的天然碱基三联体的一个必要特征是中心位置需要一个嘌呤(A或G),因为只有这些碱基在双螺旋的大沟中提供两组氢键供体/受体。缺乏此特征的嘧啶碱基具有不相容的互补性,会导致稳定性较低的三链体。本文证明,5-氨基尿嘧啶(U#)(I),一种T的嘧啶核苷类似物,其中5-甲基被5-氨基取代,两侧均有氢键结合位点,在三联体三联体X*U# x A的中心位置是相容的,其中X = A/G/C/T/2-氨基嘌呤(AP),*和x分别代表Hoogsteen和Watson-Crick氢键模式。观察到基于第三条链嘌呤A、G或AP与平行基序(A(p)*U# x A)中的A以及反平行基序(G(ap)/AP(ap)*U# x A)中的G/AP的取向(平行/反平行)的新型识别选择性。同样,对于第三条链中的嘧啶,C仅在平行模式(C(p)*U(#) x A)中被接受。值得注意的是,T在平行和反平行模式(T(p)/T(ap)*U(#) x A)中均被识别,与平行模式相比,反平行模式更稳定。“U(#)”三链体也比相应的对照“T”三链体更稳定。结果扩展了具有由中心链中的嘧啶组成的识别基序的三链体三联体的词汇表。

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本文引用的文献

5
6
8-Amino-2'-deoxyadenosine: 2'-deoxythymidine base pairing: identification of novel reverse Hoogsteen mode in solution.
Biochem Biophys Res Commun. 1994 Oct 28;204(2):788-93. doi: 10.1006/bbrc.1994.2528.
7
9
DNA triplexes: solution structures, hydration sites, energetics, interactions, and function.
Biochemistry. 1994 Sep 27;33(38):11405-16. doi: 10.1021/bi00204a001.
10
"Aromatic" substituent constants for structure-activity correlations.
J Med Chem. 1973 Nov;16(11):1207-16. doi: 10.1021/jm00269a003.

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