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The A-B transition: temperature and base composition effects on hydration of DNA

机译:A-B转换:温度和碱基组成对DNA水化的影响

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Natural DNAs and some polynucleotides organised in fiber present the A-B form transition at a relative humidity (r.h.) which depends on the temperature. A shift of the midpoint of that helix-helix transition to higher r.h. values is observed when the temperature is risen. It is shown that the average number of water molecules associated to a nucleotide pair is the relevant parameter for the A-B transition and that this parameter can be given a precise value by a combination of different r.h. and temperature values. The minimum number of water molecules necessary to get the B form depends on the base composition of the DNA. It is observed that AT base pairs have a higher affinity toward water molecules than GC base pairs. In the B form there are 27 water molecules per CC nucleotide pair and 44 per AT pair. Moreover, we noted that the fraction of nucleotides in the B form as a function of the average number of water molecules associated per base pair does not depend on the temperature. The A helical form is obtained with about II water molecules per nucleotide pair and this number is not very sensitive to the base composition of DNA. (C) 2001 Elsevier Science B.V. All rights reserved. [References: 32]
机译:纤维中组织的天然DNA和一些多核苷酸以相对湿度(r.h.)的形式呈现A-B形式的转变,该温度取决于温度。该螺旋-螺旋过渡的中点向较高r.h的偏移。当温度升高时,观察到数值。结果表明,与核苷酸对相关的水分子的平均数是A-B跃迁的相关参数,并且可以通过组合不同的r.h来为该参数指定精确的值。和温度值。获得B形式所需的最小水分子数目取决于DNA的碱基组成。观察到AT碱基对对水分子的亲和力比GC碱基对高。在B形式中,每个CC核苷酸对有27个水分子,每个AT对有44个水分子。此外,我们注意到B形式的核苷酸分数随每个碱基对缔合的水分子平均数的函数不依赖于温度。获得的A螺旋形式每个核苷酸对具有约II个水分子,并且该数目对DNA的基本组成不是很敏感。 (C)2001 Elsevier Science B.V.保留所有权利。 [参考:32]

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