Chrisman R W, Mansy S, Peresie H J, Ranade A, Berg T A, Tobias R S
Bioinorg Chem. 1977;7(3):245-66. doi: 10.1016/s0006-3061(00)80098-8.
Raman spectra have been obtained for dTMP and its complex with CH3Hg (II) in aqueous solution as a function of pH. Difference spectroscopy is employed to increase the sensitivity of the Raman technique. The binding reaction is essentially quantitative from pH 3 to 9, and the value of the equilibrium constant for CH3HgOH2+ + dThd in equilibrium CH3Hg(dThdH--1) + H30+ is estimated from intensity measurements to be 0.6 in reasonable agreement with an earlier value based upon uv spectrophotometric data. Binding is to N(3) with substitution of CH3Hg+ for the proton. A similar reaction occurs with 1-MeThy. Raman spectra for aqueous and crystalline 1-MeThy and for the complex CH3Hg(1-MeThyH--1) are reported. The spectrum of crystalline Hg(1-MeThyH--1)2, for which the crystal structure is known, also was obtained for comparison. Raman difference spectroscopy was used to confirm that CH3Hg (II) binds to N(3) of dTMP and N(1) of GMP at r = 0.2 (MeHg+: phosphate) ratios with mixtures of GMP + CMP + AMP + dTMP. In contrast, native calf thymus DNA does not appear to bind CH3Hg(II) at these sites at r = 0.15, although no significant amount of free CH3HgOH is present. With r = 0.3, extensive binding occurs both to the Thy and Gua bases. Raman difference spectroscopy is a valuable technique for studying the binding of ions and molecules to polynucleotides in moderately dilute aqueous solution.
已获得dTMP及其与CH3Hg (II) 在水溶液中的拉曼光谱,该光谱是pH值的函数。采用差示光谱法提高拉曼技术的灵敏度。从pH 3到9,结合反应基本是定量的,通过强度测量估计平衡CH3HgOH2+ + dThd ⇌ CH3Hg(dThdH-1) + H3O+的平衡常数为0.6,这与基于紫外分光光度数据的早期值合理吻合。结合发生在N(3) 位,CH3Hg+取代了质子。1-MeThy也发生类似反应。报道了水溶液和晶体1-MeThy以及配合物CH3Hg(1-MeThyH-1) 的拉曼光谱。还获得了晶体结构已知的Hg(1-MeThyH-1)2的光谱用于比较。拉曼差示光谱法用于证实,在r = 0.2(MeHg+:磷酸盐)比例下,CH3Hg (II) 与dTMP的N(3) 位和GMP的N(1) 位结合,该比例是在GMP + CMP + AMP + dTMP的混合物中。相比之下,天然小牛胸腺DNA在r = 0.15时似乎不在这些位点结合CH3Hg(II),尽管不存在大量游离的CH3HgOH。当r = 0.3时,Thy和Gua碱基都发生广泛结合。拉曼差示光谱法是研究离子和分子与中等稀水溶液中多核苷酸结合的一种有价值的技术。