Bonnist Eleanor Y M, Jones Anita C
School of Chemistry and Collaborative Optical Spectroscopy, Micromanipulation and Imaging Centre, The University of Edinburgh, West Mains Road, Edinburgh EH9 3JJ, UK.
Chemphyschem. 2008 Jun 2;9(8):1121-9. doi: 10.1002/cphc.200700813.
When 2-aminopurine (2AP) is substituted for adenine in DNA, it is widely accepted that its fluorescence spectrum is essentially unchanged from that of the free fluorophore. We show that 2AP in DNA exhibits long-wavelength emission and excitation bands, in addition to the familiar short-wavelength spectra, as a result of formation of a ground-state heterodimer with an adjacent, pi-stacked, natural base. The observation of dual emission from 2AP in a variety of oligodeoxynucleotide duplexes and single strands demonstrates the generality of this phenomenon. The photophysical and conformational properties of the long-wavelength-emitting 2AP-nucleobase dimer are examined. Analogous long-wavelength fluorescence is seen when 2AP pi-stacks with aromatic amino acid sidechains in the active sites of methyltransferase enzymes during DNA nucleotide flipping.
当在DNA中用2-氨基嘌呤(2AP)替代腺嘌呤时,人们普遍认为其荧光光谱与游离荧光团的荧光光谱基本没有变化。我们发现,DNA中的2AP除了具有常见的短波长光谱外,还表现出长波长发射带和激发带,这是由于它与相邻的、π堆积的天然碱基形成了基态异二聚体。在各种寡脱氧核苷酸双链体和单链中观察到2AP的双重发射,证明了这种现象的普遍性。我们研究了发射长波长荧光的2AP-核碱基二聚体的光物理和构象性质。当DNA核苷酸翻转过程中2AP与甲基转移酶活性位点中的芳香族氨基酸侧链发生π堆积时,也会出现类似的长波长荧光。