Ultraviolet absorption, circular dichroism and magnetic circular dichroism studies of sulfur-containing nucleic acid bases and their nucleosides

Nobuko Igarashi-Yamamoto , Akio Tajiri , Masahiro Hatano , Susumu Shibuya , Tohru Ueda
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引用次数: 41

Abstract

Spectroscopic studies on electronic structures were carried out for sulfur-containing nucleic acid bases, 2-thiouracil, 4-thiouracil, 2,4-dithiouracil and 2-thiocytosine along with their nucleosides. The absorption, circular dichroism (CD) and magnetic circular dichroism (MCD) spectra were interpreted in terms of tautomerism to suggest that 4-thiouracil is in a 2-keto-4-thione form and the other bases exist as an equilibrium mixture of thione and thiol forms in solution. The π-π★ transition energies of the thione structures of 2-thiouracil, 2-thiocytosine and their nucleosides are almost the same as those of unsubstituted pyrimidine bases and nucleosides. The n-π★ transition from a 2-thione function was clearly detected as a negative CD band at about 320 nm. On the other hand, from the absorption, CD and MCD spectra, the transitions of the 4-thiouracil derivatives were found to take place in an energy region lower than those of the corresponding parent bases.

含硫核酸碱基及其核苷的紫外吸收、圆二色性和磁性圆二色性研究
对含硫核酸碱基2-硫脲嘧啶、4-硫脲嘧啶、2,4-二硫脲嘧啶和2-硫胞嘧啶及其核苷进行了电子结构的光谱研究。吸收光谱、圆二色性(CD)和磁性圆二色性(MCD)用互变异构解释表明,4-硫脲嘧啶以2-酮-4-硫酮形式存在,而其他碱基以硫酮和硫醇形式的平衡混合物存在。2-硫脲嘧啶、2-硫胞嘧啶及其核苷的硫酮结构的π-π★跃迁能与未取代的嘧啶碱基和核苷的跃迁能几乎相同。2-硫酮函数的n-π★跃迁在约320 nm处明显为负CD带。另一方面,从吸收光谱、CD光谱和MCD光谱来看,4-硫脲嘧啶衍生物的跃迁发生在较低的能区。
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