Segers-Nolten G M, Sijtsema N M, Otto C
Applied Optics, Biophysical Technology, Institute for Biomedical Technology (BMTI), University of Twente, P.O. Box 217, 7500 AE Enschede, The Netherlands.
Biochemistry. 1997 Oct 28;36(43):13241-7. doi: 10.1021/bi971326w.
The structure of double-helical poly(dG-dC).poly(dG-dC) is investigated at various pH values with Raman spectroscopy, absorption spectroscopy, and circular dichroism. A comparison is made between the B-form with Watson-Crick base pairing at 1 mM [Na+] and pH 7.2, the Z-form with Watson-Crick base pairing at 4 M [Na+] and pH 7.2, and a different structure at 1 mM [Na+] and pH 4.5 as well as at 150 mM [Na+] and pH 3.1. The CD spectrum of poly(dG-dC). poly(dG-dC) under the latter conditions does not show a negative band at 290 nm. The structure is a double-helical structure different from the B-form and the Z-form according to circular dichroism, Raman, and absorption spectroscopic studies. The Raman spectra evidence that the structure contains Hoogsteen base pairing. This can be accommodated in the double helix when the cytosine group is protonated and the sugar-guanine conformer has adopted a C2'-endo/syn conformation. It is shown that this antiparallel-stranded Hoogsteen base paired structure can be maintained under varying conditions, balancing the decrease in pH with an increased salt concentration. It is further concluded that the proton-induced transition from a Watson-Crick to a Hoogsteen base pair is aided by a decrease of [Na+] at pH 4.5 and occurs prior to a conversion from a right-handed helix to a left-handed helix.
利用拉曼光谱、吸收光谱和圆二色光谱研究了双链聚(dG-dC)·聚(dG-dC)在不同pH值下的结构。对1 mM [Na⁺]和pH 7.2时具有沃森-克里克碱基配对的B型结构、4 M [Na⁺]和pH 7.2时具有沃森-克里克碱基配对的Z型结构,以及1 mM [Na⁺]和pH 4.5以及150 mM [Na⁺]和pH 3.1时的不同结构进行了比较。在后者条件下,聚(dG-dC)·聚(dG-dC)的圆二色光谱在290 nm处未显示负带。根据圆二色性、拉曼光谱和吸收光谱研究,该结构是一种不同于B型和Z型的双螺旋结构。拉曼光谱证明该结构包含Hoogsteen碱基配对。当胞嘧啶基团质子化且糖-鸟嘌呤构象体采用C2'-内型/反式构象时,这种碱基配对可以容纳在双螺旋中。结果表明,这种反平行链的Hoogsteen碱基配对结构可以在不同条件下维持,通过增加盐浓度来平衡pH值的降低。进一步得出结论,在pH 4.5时,质子诱导的从沃森-克里克碱基对到Hoogsteen碱基对的转变因[Na⁺]的降低而得到促进,并且发生在从右手螺旋转变为左手螺旋之前。