Barcellona M L, Cardiel G, Gratton E
Istituto di Chimica Biologica, Universitá di Catania, Italy.
Biochem Biophys Res Commun. 1990 Jul 16;170(1):270-80. doi: 10.1016/0006-291x(90)91270-3.
Fluorescence decay studies, obtained by multifrequency phase-modulation fluorometry, have been performed on DAPI in solution and complexed with natural and synthetic polydeoxynucleotides. DAPI decay at pH 7 was decomposed using two exponential components of 2.8 and 0.2 ns of lifetime values, respectively. The double exponential character of the decay was maintained over a large pH range. Phase- and modulation-resolved spectra, collected between 420 and 550 nm, have indicated at least two spectral components associated with the two lifetime values. This, plus the observation of the dependence of the emission spectrum on the excitation wavelength, suggests a lifetime heterogeneity originating from ground-state molecular conformers, partially affected by pH changes. DAPI complexed with natural polydeoxynucleotides retained most of the features of DAPI decay in solution, except for the value of the long lifetime component that was longer (approximately 4 ns) and the relative fractional fluorescence intensities of the two components that were inverted. AT polymers/DAPI complexes show single exponential decay. Solvent shielding when DAPI is bound to DNA changes the indole ring solvation and stabilizes the longer lifetime decay component. For poly(GC)/DAPI complex, the decay was similar to that of free DAPI in solution, proving the dependence on the polydeoxynucleotides sequence the different types of binding and the reliability of the fluorescence method to solve them.
通过多频相位调制荧光法进行的荧光衰减研究,已在溶液中的DAPI以及与天然和合成多脱氧核苷酸复合的DAPI上开展。在pH 7条件下,DAPI的衰减分别用寿命值为2.8和0.2 ns的两个指数成分进行分解。衰减的双指数特征在较大的pH范围内得以保持。在420至550 nm之间收集的相位分辨光谱和调制分辨光谱表明,至少有两个光谱成分与两个寿命值相关。这一点,再加上发射光谱对激发波长的依赖性观察结果,表明寿命异质性源于基态分子构象体,部分受pH变化影响。与天然多脱氧核苷酸复合的DAPI保留了溶液中DAPI衰减的大部分特征,只是长寿命成分的值更长(约4 ns),且两个成分的相对荧光强度分数颠倒。AT聚合物/DAPI复合物呈现单指数衰减。当DAPI与DNA结合时,溶剂屏蔽会改变吲哚环的溶剂化作用,并使较长寿命的衰减成分稳定下来。对于聚(GC)/DAPI复合物,其衰减与溶液中游离DAPI的衰减相似,这证明了不同类型结合对多脱氧核苷酸序列的依赖性以及荧光方法解决这些问题的可靠性。