首页> 外文期刊>Journal of Biophysics and Structural Biology >Physical basis of the DNA double helix
【24h】

Physical basis of the DNA double helix

机译:DNA双螺旋的物理基础

获取原文
           

摘要

Despite the widely spread acceptance that the enthalpy of DNA duplex unfolding does not depend on temperature and is greater for the CG base pair held by three hydrogen bonds than for the AT base pair held by only two hydrogen bonds, direct calorimetric measurement has shown that the enthalpic and entropic contributions of both base pairs are temperature dependent and at all temperatures they are greater for the AT base pair.? The larger enthalpic and entropic contributions of the AT base pair result from water that is fixed by this pair in the minor groove of DNA and is released at duplex dissociation, while their dependence on temperature results from hydration of the apolar surfaces of bases that become exposed upon duplex dissociation.? Analysis of the obtained thermodynamic characteristics of unfolding/refolding of the DNA duplexes of various compositions shows that the enthalpic contribution of base pairing is negligibly small, while the entropic is considerable.? Thus, the DNA base pairing is the entropy driven process but it is conjugate with the bases stacking that is the enthalpy driven. The last is responsible for about 50% of duplex stabilizing Gibbs energy and for almost 100% of its enthalpy, that is for the total heat of DNA melting.
机译:尽管已广泛接受DNA双链体展开的焓不依赖于温度并且对于三个氢键所持的CG碱基对的焓要大于仅两个氢键所持的AT碱基对的焓,但直接量热法测量表明这两个碱基对的焓和熵贡献均与温度有关,在所有温度下,AT碱基对的焓和熵贡献都更大。 AT碱基对的较大的焓和熵贡献来自于该碱基对固定在DNA的小沟中并在双链体解离时释放的水,而它们对温度的依赖性则是由于碱基的非极性表面水合而导致的。在双链解离时。对所获得的各种组成的DNA双链体的展开/复性的热力学特性的分析表明,碱基配对的焓贡献很小,而熵却很大。因此,DNA碱基配对是熵驱动的过程,但是它与由焓驱动的碱基堆积缀合。最后一个负责约50%的双链稳定Gibbs能量和几乎100%的焓,即DNA融解的总热量。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号