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赖氨酰-5-氟色氨酰赖氨酸非对映异构三肽与DNA的相互作用。1. 天然DNA复合物的光学和19F核磁共振研究。

Interactions of diastereomeric tripeptides of lysyl-5-fluorotryptophyllysine with DNA. 1. Optical and 19F NMR studies of native DNA complexes.

作者信息

Shine N R, James T L

出版信息

Biochemistry. 1985 Jul 30;24(16):4333-41. doi: 10.1021/bi00337a012.

Abstract

Lysyl-5-fluoro-L-tryptophyllysine and lysyl-5-fluoro-D-tryptophyllysine were synthesized, and their interactions with double-stranded DNA were investigated as a model for protein-nucleic acid interactions. The binding to DNA was studied by monitoring various 19F NMR parameters, the fluorescence, and the optical absorbance in thermal denaturation. The 19F resonance of the L-Trp peptide shifts upfield in the presence of DNA, and that of the D-Trp peptide shifts downfield with DNA present. The influence of ionic strength on the binding of each peptide to DNA and the fluorescence quenching titration of each with DNA indicate that electrostatic bonding (approximately 2 per peptide-DNA complex) dominates the binding in each case and accounts for the similar binding constants determined from the fluorescence quenching, i.e., 7.7 X 10(4) M-1 for the L-Trp complex and 6.2 X 10(-1) for the D-Trp complex. The 19F NMR chemical shift, line width, 19F[1H] nuclear Overhauser effect, and spin-lattice relaxation time (T1) changes all indicate that the aromatic moiety of the L-Trp complex, but not that of the D-Trp complex, is stacked between the bases of DNA. The relative increases in DNA melting temperature caused by binding of the tripeptide diastereomers are also consistent with stacking in the case of the L-Trp peptide. The magnitude of the changes and the susceptibility of the 19F NMR chemical shift to altering the solvent isotope (H2O vs. D2O) suggest that the L-Trp ring is not intercalated in the classical sense but is partially inserted between the bases of one strand of the double helix.

摘要

合成了赖氨酰-5-氟-L-色氨酰赖氨酸和赖氨酰-5-氟-D-色氨酰赖氨酸,并研究了它们与双链DNA的相互作用,以此作为蛋白质-核酸相互作用的模型。通过监测各种19F NMR参数、荧光以及热变性中的光吸收来研究与DNA的结合。在DNA存在的情况下,L-色氨酸肽的19F共振向高场移动,而D-色氨酸肽的19F共振在DNA存在时向低场移动。离子强度对每种肽与DNA结合的影响以及每种肽与DNA的荧光猝灭滴定表明,静电结合(每个肽-DNA复合物约2个)在每种情况下都主导着结合,并解释了从荧光猝灭测定得到的相似结合常数,即L-色氨酸复合物为7.7×10(4) M-1,D-色氨酸复合物为6.2×10(-1)。19F NMR化学位移、线宽、19F[1H]核Overhauser效应以及自旋-晶格弛豫时间(T1)的变化都表明,L-色氨酸复合物的芳香部分而非D-色氨酸复合物的芳香部分堆积在DNA的碱基之间。由三肽非对映异构体结合引起的DNA解链温度的相对升高在L-色氨酸肽的情况下也与堆积一致。变化的幅度以及19F NMR化学位移对改变溶剂同位素(H2O与D2O)的敏感性表明,L-色氨酸环不是以经典意义嵌入,而是部分插入双螺旋一条链的碱基之间。

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