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Temperature dependence of the gel electrophoretic mobility of superhelical DNA.

机译:超螺旋DNA凝胶电泳迁移率的温度依赖性。

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摘要

We have determined the gel electrophoretic behavior of closed circular plasmid pSM1 DNA (5420 bp) as a function of both temperature and of linking number (Lk). At temperatures below 37 degrees, the electrophoretic mobility first increases, then becomes constant as Lk is decreased below that of the relaxed closed DNA. As the temperature is increased above 37 degrees the electrophoretic mobility first increases as Lk decreases and then varies in a cyclic manner with further decreases in Lk. As the temperature is increased over the range 37 degrees - 65 degrees the cyclic behavior is manifested at progressively smaller decreases in Lk and the amplitude of the cycles increases. We interpret the results in terms of the early melting of superhelical DNA, in which the free energy associated with superhelix formation is progressively transferred to local denaturation. Using a two state approximation, we estimate the free energy change in the first cyclic transition to be 35 Kcal/mole DNA at 37 degrees and to decrease linearly with temperature. The free energy becomes equal to zero at a temperature of 71.6 degrees, which lies within 3 degrees of the melting temperature for the corresponding nicked circular DNA. From the slope of this relationship we estimate the apparent entropy and enthalpy of the first mobility transition to be 6.0 Kcal/mole base pair and 17.3 cal/mole base pair/degree, values consistent with duplex melting.
机译:我们已经确定了封闭的环状质粒pSM1 DNA(5420 bp)的凝胶电泳行为是温度和连接数(Lk)的函数。在低于37度的温度下,电泳迁移率首先增加,然后随着Lk降低到低于松弛的封闭DNA的水平而变得恒定。当温度升高到37度以上时,电泳迁移率首先随着Lk的降低而增加,然后以循环的方式变化,Lk进一步降低。随着温度在37度至65度范围内升高,循环行为表现为Lk逐渐减小,循环幅度增大。我们用超螺旋DNA的早期融化来解释结果,其中与超螺旋形成相关的自由能逐渐转移到局部变性。使用两个状态的近似值,我们估计第一个循环跃迁中的自由能变化在37度为35 Kcal / mole DNA,并随温度线性降低。在71.6度的温度下,自由能等于零,该温度在相应的带切口圆形DNA的解链温度的3度以内。根据这种关系的斜率,我们估计第一迁移率跃迁的表观熵和焓为6.0 Kcal / mol碱基对和17.3 cal / mol碱基对/度,该值与双链熔解一致。

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