Sahasrabudhe P V, Pon R T, Gmeiner W H
Eppley Cancer Institute, University of Nebraska Medical Center, Omaha 68198-6805, USA.
Nucleic Acids Res. 1995 Oct 11;23(19):3916-21. doi: 10.1093/nar/23.19.3916.
The effects of 5-fluorouridine (FUrd) and 5-fluorodeoxyuridine (FdUrd) substitution on the stabilities of duplex RNA and DNA have been studied to determine how FUrd substitution in nucleic acids may alter the efficiency of biochemical processes that require complementary base pairing for molecular recognition. The parent sequence, 5'-GCGAAUUCGC, contains two non-equivalent uridines. Eight oligonucleotides (four RNA and four DNA) were prepared with either zero, one or two Urd substituted by FUrd. The stability of each self-complementary duplex was determined by measuring the absorbance at 260 nm as a function of temperature. Tm values were calculated from the first derivative of the absorbance versus temperature profiles and values for delta H0 and delta S0 were calculated from the concentration dependence of the Tm. Individual absorbance versus temperature curves were also analyzed by a parametric approach to calculate thermodynamic parameters for the duplex to single-stranded transition. Analysis of the thermodynamic parameters for each oligonucleotide revealed that FUrd substitution had sequence-dependent effects in both A-form RNA and B-form DNA duplexes. Conservation of helix geometry in FUrd-substituted duplexes was determined by CD spectroscopy. FUrd substitution at a single site in RNA stabilized the duplex (delta delta G37 = 0.8 kcal/mol), largely due to more favorable stacking interactions. FdUrd substitution at a single site in DNA destabilized the duplex (delta delta G37 = 0.3 kcal/mol) as a consequence of less favorable stacking interactions. All duplexes melt via single cooperative transitions.
研究了5-氟尿苷(FUrd)和5-氟脱氧尿苷(FdUrd)取代对双链RNA和DNA稳定性的影响,以确定核酸中的FUrd取代如何改变需要互补碱基配对进行分子识别的生化过程的效率。亲本序列5'-GCGAAUUCGC包含两个不等价的尿苷。制备了八个寡核苷酸(四个RNA和四个DNA),其中零个、一个或两个Urd被FUrd取代。通过测量260nm处的吸光度随温度的变化来确定每个自互补双链体的稳定性。从吸光度对温度曲线的一阶导数计算Tm值,并从Tm的浓度依赖性计算ΔH0和ΔS0值。还通过参数方法分析了各个吸光度对温度曲线,以计算双链体到单链转变的热力学参数。对每个寡核苷酸的热力学参数分析表明,FUrd取代在A-型RNA和B-型DNA双链体中都具有序列依赖性效应。通过圆二色光谱法确定了FUrd取代双链体中螺旋几何结构的保守性。RNA中单个位点的FUrd取代使双链体稳定(ΔΔG37 = 0.8 kcal/mol),这主要是由于更有利的堆积相互作用。DNA中单个位点的FdUrd取代使双链体不稳定(ΔΔG37 = 0.3 kcal/mol),这是由于堆积相互作用不太有利的结果。所有双链体都通过单一协同转变解链。