首页> 外文期刊>Journal of Biomolecular Structure and Dynamics >An NMR study of d(CTACTGCTTTAG).d(CTAAAGCAGTAG) showing hydration water molecules in the minor groove of a TpA step.
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An NMR study of d(CTACTGCTTTAG).d(CTAAAGCAGTAG) showing hydration water molecules in the minor groove of a TpA step.

机译:d(CTACTGCTTTAG).d(CTAAAGCAGTAG)的NMR研究显示TpA步骤的小沟中存在水合水分子。

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The hydration properties of the non-palindromic duplex d(CTACTGCTTTAG). d(CTAAAGCAGTAG) were investigated by NMR spectroscopy. The oligonucleotide possesses a heterogeneous B-DNA structure. The H2(n)-H1'(m+1) distances reflect a minor groove narrowing within the TTT/AAA segment (approximately 3.9A) and a sudden widening at the T10:A15 base-pair (approximately 5.3A), the standard B-DNA distance being approximately 5A. The facing T10pA11 and T14pA15 steps at the end of the TTTA/AAAT segment have completely different behaviors. Only A15 ending the AAA run displays NMR features comparable to those shown by adenines of TpA steps occupying the central position of TnAn (n> or =2) segments. These involve particular chemical shifts and line broadening of the H2 and H8 protons. Positive NOESY cross-peaks were measured between the water protons and the H2 protons of A15, A16 and A17 reflecting the occurrence of hydration water molecules with residence times longer than 500 picoseconds along the minor groove of the TTT/AAA segment. In contrast no water molecules with long residence times were observed neither for A3, A20 and A23 nor for A11 ending the 5'TTTA run. We confirm thus that the binding of water molecules with long residence time to adenine residues correlates with the minor groove narrowing. In contrast, the widening of the minor groove at the A11:T14 base-pair ending the TTTA/TAAA segment, likely associated to a high negative propeller twist value at this base-pair, prevents the binding of a water molecule with long residence time to A11 but not to A15 of the preceding T10:A15 base-pair. Thus, in our non-palindromic oligonucleotide the water molecules bind differently to A11 and A15 although both adenines are part of a TpA step. The slower motions occurring at A15 compared to A11 are also well explained by the present results.
机译:非回文双链体d(CTACTGCTTTAG)的水合特性。 d(CTAAAGCAGTAG)通过NMR光谱研究。寡核苷酸具有异质的B-DNA结构。 H2(n)-H1'(m + 1)的距离反映了TTT / AAA段中的小凹槽变窄(大约3.9A),以及在标准的T10:A15碱基对处突然变宽(大约5.3A) B-DNA距离约为5A。 TTTA / AAAT段末尾的面对的T10pA11和T14pA15步骤具有完全不同的行为。只有结束AAA运行的A15的NMR特征可与占据TnAn(n>或= 2)段中心位置的TpA台阶的腺嘌呤所显示的特征相媲美。这些涉及特殊的化学位移和H2和H8质子的谱线加宽。在A15,A16和A17的水质子和H2质子之间测得正NOESY交叉峰,反映出沿TTT / AAA段的小沟长出停留时间超过500皮秒的水合水分子的出现。相反,对于A3,A20和A23以及在5'TTTA运行结束的A11均未观察到具有长停留时间的水分子。因此,我们证实了水分子具有长的停留时间与腺嘌呤残基的结合与较小的凹槽变窄相关。相反,终止于TTTA / TAAA段的A11:T14碱基对处的小沟的加宽可能与该碱基对处的高螺旋桨扭转负值有关,从而阻止了水分子在长停留时间内的结合而不是前面的T10:A15碱基对的A11,但不是。因此,在我们的非回文寡核苷酸中,尽管两个腺嘌呤都是TpA步骤的一部分,但水分子与A11和A15的结合不同。本结果也很好地解释了A15处发生的运动比A11处的运动慢。

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