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具有多峰差示熔解曲线的DNA熔解温度和熔解温度范围的测定

Determination of melting temperature and temperature melting range for DNA with multi-peak differential melting curves.

作者信息

Lando Dmitri Y, Fridman Alexander S, Chang Chun-Ling, Grigoryan Inessa E, Galyuk Elena N, Murashko Oleg N, Chen Chun-Chung, Hu Chin-Kun

机构信息

Institute of Bioorganic Chemistry, National Academy of Sciences of Belarus, 220141 Minsk, Belarus; Institute of Physics, Academia Sinica, Nankang, Taipei 11529, Taiwan.

Institute of Bioorganic Chemistry, National Academy of Sciences of Belarus, 220141 Minsk, Belarus.

出版信息

Anal Biochem. 2015 Jun 15;479:28-36. doi: 10.1016/j.ab.2015.01.018. Epub 2015 Jan 30.

Abstract

Many factors that change the temperature position and interval of the DNA helix-coil transition often also alter the shape of multi-peak differential melting curves (DMCs). For DNAs with a multi-peak DMC, there is no agreement on the most useful definition for the melting temperature, Tm, and temperature melting width, ΔT, of the entire DNA transition. Changes in Tm and ΔT can reflect unstable variation of the shape of the DMC as well as alterations in DNA thermal stability and heterogeneity. Here, experiments and computer modeling for DNA multi-peak DMCs varying under different factors allowed testing of several methods of defining Tm and ΔT. Indeed, some of the methods give unreasonable "jagged" Tm and ΔT dependences on varying relative concentration of DNA chemical modifications (rb), [Na(+)], and GC content. At the same time, Tm determined as the helix-coil transition average temperature, and ΔT, which is proportional to the average absolute temperature deviation from this temperature, are suitable to characterize multi-peak DMCs. They give smoothly varying theoretical and experimental dependences of Tm and ΔT on rb, [Na(+)], and GC content. For multi-peak DMCs, Tm value determined in this way is the closest to the thermodynamic melting temperature (the helix-coil transition enthalpy/entropy ratio).

摘要

许多改变DNA螺旋-线圈转变温度位置和区间的因素,通常也会改变多峰差示熔解曲线(DMC)的形状。对于具有多峰DMC的DNA,关于整个DNA转变的熔解温度(Tm)和熔解温度宽度(ΔT)的最有用定义尚无定论。Tm和ΔT的变化可以反映DMC形状的不稳定变化以及DNA热稳定性和异质性的改变。在此,对在不同因素下变化的DNA多峰DMC进行实验和计算机建模,从而能够测试几种定义Tm和ΔT的方法。实际上,一些方法给出的Tm和ΔT对DNA化学修饰相对浓度(rb)、[Na⁺]和GC含量变化的依赖性是不合理的“锯齿状”。同时,将Tm确定为螺旋-线圈转变平均温度,以及将ΔT确定为与偏离该温度的平均绝对温度偏差成比例的值,适用于表征多峰DMC。它们给出了Tm和ΔT对rb、[Na⁺]和GC含量的理论和实验依赖性的平滑变化。对于多峰DMC,以这种方式确定的Tm值最接近热力学熔解温度(螺旋-线圈转变焓/熵比)。

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