McMasters Sun, Kelly Lisa A
Department of Chemistry and Biochemistry, University of Maryland, Baltimore County, Baltimore, Maryland 21250, USA.
J Phys Chem B. 2006 Jan 19;110(2):1046-55. doi: 10.1021/jp0551061.
Water soluble spermine, spermine-naphthalimide, and pyridinium-substituted 1,8-naphthalimide derivatives have been synthesized as nucleotide-specific binding agents. Both mono- and bifunctionalized spermine compounds were studied. The photophysical properties of each compound were studied by using time-resolved and steady-state fluorescence and absorption spectroscopies. The fluorescence decay of the mononaphthalimides was adequately fit to a single exponential decay, and in all cases, the lifetime (2.4 ns) was independent of the imide substitutent. In the case of the bisnaphthalimide, emission from both the monomer and ground-state dimer forms was observed. The fluorescence quantum yield of the monomer (0.03) was significantly smaller than that of the mononaphthalimides (0.27). The dimer emission was red-shifted relative to that of the monomer. The singlet-state lifetime of the dimer was found to be 20 ns. In all cases, only absorption from the triplet excited state was observed, indicating no evidence of a naphthalimide radical anion from dimer excitation. The ground-state interactions of the naphthalimides with four nucleotides were investigated. Nucleotide selectivity was evaluated by determining their individual binding constants (Keq). The association constants were measured by using absorption, time-resolved fluorescence, and combined time-resolved and steady-state fluorescence. The equilibrium binding constant was largest for association of the spermine-substituted mononaphthalimide with adenosine monophosphate (Keq=550 M-1) or guanosine monophosphate (Keq=440 M-1). The dimer form of the disubstituted spermine also showed binding constants in excess of 200 M-1 with the purine nucleotides. The association constant for binding of the pyridinium-substituted naphthalimide showed little dependence on the structure of the nucleotide.
已合成水溶性精胺、精胺 - 萘二甲酰亚胺和吡啶鎓取代的1,8 - 萘二甲酰亚胺衍生物作为核苷酸特异性结合剂。研究了单官能化和双官能化的精胺化合物。通过时间分辨和稳态荧光及吸收光谱研究了每种化合物的光物理性质。单萘二甲酰亚胺的荧光衰减充分拟合为单指数衰减,在所有情况下,寿命(2.4纳秒)与酰亚胺取代基无关。对于双萘二甲酰亚胺,观察到单体和基态二聚体形式的发射。单体的荧光量子产率(0.03)明显小于单萘二甲酰亚胺(0.27)。二聚体发射相对于单体发生红移。发现二聚体的单重态寿命为20纳秒。在所有情况下,仅观察到来自三重激发态的吸收,表明没有证据表明二聚体激发产生萘二甲酰亚胺自由基阴离子。研究了萘二甲酰亚胺与四种核苷酸的基态相互作用。通过测定它们各自的结合常数(Keq)评估核苷酸选择性。结合常数通过吸收、时间分辨荧光以及结合时间分辨和稳态荧光来测量。精胺取代的单萘二甲酰亚胺与单磷酸腺苷(Keq = 550 M-1)或单磷酸鸟苷(Keq = 440 M-1)结合的平衡结合常数最大。双取代精胺的二聚体形式与嘌呤核苷酸的结合常数也超过200 M-1。吡啶鎓取代的萘二甲酰亚胺的结合常数对核苷酸结构的依赖性很小。