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首页> 外文期刊>Biochemistry >Thermodynamic, spectroscopic, and equilibrium binding studies of DNA sequence context effects in six 22-base pair deoxyoligonucleotides.
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Thermodynamic, spectroscopic, and equilibrium binding studies of DNA sequence context effects in six 22-base pair deoxyoligonucleotides.

机译:在六个22个碱基对的脱氧寡核苷酸中对DNA序列上下文效应的热力学,光谱学和平衡结合研究。

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摘要

Effects of different end sequences on stability, circular dichroism spectra (CD), and enzyme binding properties were investigated for six 22-base pair, non-self-complementary duplex DNA oligomers. The center sequences of these deoxyoligonucleotides have 8-14 base pairs in common and are flanked on both sides by sequences differing in context and A-T content. Temperature-induced melting transitions monitored by differential scanning calorimetry (DSC) and ultraviolet absorbance were measured for the six duplexes in buffered 115 mM Na(+) solutions. Values of the melting transition enthalpy, DeltaH(cal), and entropy, DeltaS(cal), were obtained directly from DSC experiments. Melting transition parameters, DeltaH(vH) and DeltaS(vH), were also estimated from van't Hoff analysis of optical melting curves collected as a function of DNA concentration, assuming a two-state melting transition. Melting free energies (20 degrees C) of the six DNAs evaluated from DSC experiments ranged from -18.7 to -32.7 kcal/mol. van't Hoff estimates of the free energies ranged from -18.5 to -48.0 kcal/mol. With either method, the trends in free energy as a function of sequence were identical. Equilibrium binding by BamHI restriction endonuclease to the 22-base pair DNAs was also investigated. The central eight base pairs of all six molecules, 5'-A-GGATCC-A-3', contained a BamHI recognition sequence bounded by A-T base pairs. Magnesium free binding assays were performed by titering BamHI against a constant concentration of each of the deoxyoligonucleotide substrates and analyzing reaction products by gel retardation. Binding isotherms of the total amount of bound DNA versus protein concentration were constructed which provided semiquantitative estimates of the equilibrium dissociation constants for dissociation of BamHI from the six DNA oligomers. Dissociation constants ranged from 0.5 x 10(-)(9) to 12.0 x 10(-)(9) M with corresponding binding free energies of -12.5 to -10.6 (+/-0. 1) kcal/mol. An inverse relationship is found when binding and stability are compared.
机译:研究了六种22个碱基对,非自互补双链DNA寡聚体的不同末端序列对稳定性,圆二色性谱(CD)和酶结合特性的影响。这些脱氧寡核苷酸的中心序列共有8-14个碱基对,并且在两侧侧接上下文和A-T含量不同的序列。在115 mM Na(+)缓冲溶液中测量了六个双链体的差示扫描量热法(DSC)和紫外线吸收率监测的温度诱导的熔融转变。直接从DSC实验获得熔融转变焓DeltaH(cal)和熵值DeltaS(cal)的值。假设为两个状态的熔解转变,熔解转变参数DeltaH(vH)和DeltaS(vH)也可以根据收集的DNA浓度函数的光学熔解曲线的van't Hoff分析进行估算。通过DSC实验评估的六个DNA的熔解自由能(20摄氏度)范围为-18.7至-32.7 kcal / mol。范霍夫对自由能的估计范围为-18.5至-48.0 kcal / mol。无论采用哪种方法,自由能随序列的变化趋势都是相同的。还研究了BamHI限制性核酸内切酶与22个碱基对DNA的平衡结合。所有六个分子的中央八个碱基对(5'-A-GGATCC-A-3')包含一个以A-T碱基对为边界的BamHI识别序列。通过针对恒定浓度的每种脱氧寡核苷酸底物滴定BamHI并通过凝胶阻滞分析反应产物来进行无镁结合测定。构建了结合的DNA总量相对于蛋白质浓度的结合等温线,其为从六个DNA低聚物解离BamHI提供了平衡解离常数的半定量估计。解离常数范围为0.5 x 10(-)(9)到12.0 x 10(-)(9)M,相应的结合自由能为-12.5至-10.6(+/- 0.1)kcal / mol。比较结合力和稳定性时发现反比关系。

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