Manalo Marlon N, Kong Xiangming, LiWang Andy
Department of Biochemistry & Biophysics, Texas A&M University, 2128 TAMU, College Station, TX 77843-2128, USA.
J Biomol NMR. 2007 Apr;37(4):257-63. doi: 10.1007/s10858-006-9132-8. Epub 2007 Feb 20.
Hydrogen-bond lengths of nucleic acids are (1) longer in DNA than in RNA, and (2) sequence dependent. The physicochemical basis for these variations in hydrogen-bond lengths is unknown, however. Here, the notion that hydration plays a significant role in nucleic acid hydrogen-bond lengths is tested. Watson-Crick N1...N3 hydrogen-bond lengths of several DNA and RNA duplexes are gauged using imino 1J(NH) measurements, and ethanol is used as a cosolvent to lower water activity. We find that 1J(NH) values of DNA and RNA become less negative with added ethanol, which suggests that mild dehydration reduces hydrogen-bond lengths even as the overall thermal stabilities of these duplexes decrease. The 1J(NH) of DNA are increased in 8 mol% ethanol to those of RNA in water, which suggests that the greater hydration of DNA plays a significant role in its longer hydrogen bonds. The data also suggest that ethanol-induced dehydration is greater for the more hydrated G:C base pairs and thereby results in greater hydrogen-bond shortening than for the less hydrated A:T/U base pairs of DNA and RNA.
(1)DNA中的氢键长度比RNA中的长;(2)依赖于序列。然而,这些氢键长度变化的物理化学基础尚不清楚。在此,对水合作用在核酸氢键长度中起重要作用这一观点进行了验证。通过亚氨基1J(NH)测量来测定几种DNA和RNA双链体的沃森-克里克N1...N3氢键长度,并使用乙醇作为共溶剂来降低水的活性。我们发现,添加乙醇后,DNA和RNA的1J(NH)值变得不那么负,这表明轻度脱水会缩短氢键长度,即便这些双链体的整体热稳定性降低。在8 mol%乙醇中,DNA的1J(NH)值增加到与水中RNA的1J(NH)值相当,这表明DNA中更强的水合作用在其较长的氢键中起重要作用。数据还表明,对于水合程度更高的G:C碱基对,乙醇诱导的脱水作用更强,因此与DNA和RNA中水合程度较低的A:T/U碱基对相比,氢键缩短程度更大。