Malone Rosalie J, Miller Angela M, Kohler Bern
Department of Chemistry, The Ohio State University, Columbus, OH 43210, USA.
Photochem Photobiol. 2003 Feb;77(2):158-64. doi: 10.1562/0031-8655(2003)077<0158:sesloc>2.0.co;2.
Lifetimes of the lowest excited singlet (S1) electronic states of various derivatives of the pyrimidine nucleobase cytosine (Cyt) were measured by the femtosecond transient absorption technique. The bases were excited in room-temperature aqueous solution at 265 nm using approximately 200 fs pump pulses from a titanium-sapphire laser system. The decay of excited-state absorption (ESA) at visible probe wavelengths was used to determine the S1 lifetimes of a variety of modified Cyt compounds at different pH values by global fitting. Identical lifetimes were observed for Cyt and cytidine (Cyd) within experimental uncertainty, but ESA by the ribonucleoside was considerably stronger, suggesting that the ribose group increases the oscillator strength of the S1 --> SN transition. The S1 lifetime of the important minor base 5-methylcytosine (m5Cyt) is 7.2 +/- 0.4 ps at pH 6.8. The same lifetime was measured for the ribonucleoside 5-methylcytidine, but sugar substitution again increased the strength of the ESA signal. Protonation of Cyd and m5Cyt at low pH led to a modest decrease in their S1 lifetimes. On the other hand, deprotonation of Cyt and m5Cyt significantly increased the lifetime of their respective S1 states. These trends support the intermediacy of the n,pi* state localized on the carbonyl oxygen in the nonradiative decay mechanism of Cyt. Longer S1 lifetimes were observed for 5-fluorocytosine and N4-acetylcytosine. Collectively, these results illustrate the great potential of femtosecond laser spectroscopy for investigating excited-state dynamics in DNA and DNA components.
利用飞秒瞬态吸收技术测量了嘧啶核苷酸碱基胞嘧啶(Cyt)各种衍生物的最低激发单重态(S1)电子态的寿命。在室温水溶液中,使用钛宝石激光系统产生的约200 fs泵浦脉冲在265 nm波长下激发这些碱基。通过全局拟合,利用可见探测波长处激发态吸收(ESA)的衰减来确定不同pH值下各种修饰的Cyt化合物的S1寿命。在实验误差范围内,观察到Cyt和胞苷(Cyd)的寿命相同,但核糖核苷的ESA要强得多,这表明核糖基团增加了S1→SN跃迁的振子强度。在pH 6.8时,重要的稀有碱基5-甲基胞嘧啶(m5Cyt)的S1寿命为7.2±0.4 ps。对核糖核苷5-甲基胞苷测量到了相同的寿命,但糖取代再次增加了ESA信号的强度。在低pH值下Cyd和m5Cyt的质子化导致它们的S1寿命略有下降。另一方面,Cyt和m5Cyt的去质子化显著增加了它们各自S1态的寿命。这些趋势支持了在Cyt的非辐射衰变机制中,n,π*态定域在羰基氧上这一中间过程。观察到5-氟胞嘧啶和N4-乙酰胞嘧啶的S1寿命更长。总的来说,这些结果说明了飞秒激光光谱在研究DNA和DNA组分的激发态动力学方面具有巨大潜力。