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Fluorescence-determined preferential binding of quinacrine to DNA.

机译:荧光测定奎纳克林与DNA的优先结合。

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摘要

Quinacrine complexes with native DNA (Calf thymus, Micrococcus lysodeikticus, Escherichia coli, Bacillus subtilis, and Colstridium perfringens) and synthetic polynucleotides (poly(dA) . poly(dT), poly[d(A-T)] . poly[d(A-T)], poly(dG) . poly(dC) and poly[d(G-C)] . poly[d(G-C)]) has been investigated in solution at 0.1 M NaCl, 0.05 M Tris HCl, 0.001 M EDTA, pH 7.5, at 20 degrees C. Fluorescence excitation spectra of complexes with dye concentration D = 5-30 microM and DNA phosphate concentration P = 400 microM have been examined from 300 to 500 nm, while collecting the emission above 520 nm. The amounts of free and bound quinacrine in the dye-DNA complexes have been determined by means of equilibrium dialysis experiments. Different affinities have been found for the various DNAs and their values have been examined with a model that assumes that the binding constants associated with alternating purine and pyrimidine sequences are larger than those relative to nonalternating ones. Among the alternating nearest neighbor base sequences, the Pyr(3'-5')Pur sequences, i.e., C-G, T-G, C-A and T-A seem to bind quinacrine stronger than the remaining sequences. In particular the three sites, where a G . C base pair is involved, are found to display higher affinities. Good agreement is found with recent calculations on the energetics of intercalation sites in DNA. The analysis of the equilibrium shows also that the strength of the excitation spectrum of bound dye depends strongly upon the ratio of bound quinacrine to DNA. This effect can be attributed to dye-dye energy transfer along DNA.
机译:奎纳克林与天然DNA(小胸腺,小球菌,大肠杆菌,枯草芽孢杆菌和产气荚膜炎球菌)和合成多核苷酸(poly(dA)。poly(dT),poly [d(AT)]。poly [d(AT))的复合物],poly(dG)。poly(dC)和poly [d(GC)]。poly [d(GC)])在0.1 M NaCl,0.05 M Tris HCl,0.001 M EDTA,pH 7.5,在20摄氏度下。在300到500 nm范围内检查了染料浓度D = 5-30 microM和DNA磷酸盐浓度P = 400 microM的配合物的荧光激发光谱,同时收集了520 nm以上的发射光。已经通过平衡透析实验确定了染料-DNA复合物中游离和结合的奎纳克林的量。对于各种DNA,发现了不同的亲和力,并用一个模型检验了它们的值,该模型假定与嘌呤和嘧啶交替序列相关的结合常数大于非交替嘌呤和嘧啶序列的结合常数。在交替的最近邻碱基序列中,Pyr(3'-5')Pur序列,即C-G,T-G,C-A和T-A似乎比其余序列更强地结合奎纳克林。特别是三个站点,其中一个G。涉及C碱基对,发现显示更高的亲和力。与最近关于DNA插入位点的能量学计算的一致性很好。平衡分析还表明,结合染料的激发光谱的强度在很大程度上取决于结合的奎纳克林与DNA的比例。这种作用可归因于染料能量沿DNA的转移。

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