Burke R L, Bauer W R
Nucleic Acids Res. 1977 Jun;4(6):1891-909. doi: 10.1093/nar/4.6.1891.
Aqueous RbTCA is generally suitable as a buoyant solvent for both native and denatured DNA at neutral pH and room temperature. Native PM-2 DNA II, for example, is buoyant at 3.29 M salt, 25 degrees C; whereas the denatured strands band together at 4.52 M. Two properties of the solvent make this system uniquely useful for separations based upon the extent of secondary structure. First, the melting transition temperature for chemically unaltered DNA is depressed to room temperature or below. Second, the buoyant density increase accompanying denaturation is extraordinarily large, 174 mg/ml for PM-2 DNA II. This value is three times that found in aqueous NaI and ten times that for CsCl. The properties of the RbTCA buoyant solvent presented here include the compositional and buoyant density gradients and the buoyant density dependence upon base composition. The DNA remains chemically unaltered after exposure to RbTCA as shown by the absence of strand scissions for closed circular DNA and by the unimpaired biological activity in transformation assays. Intact virion DNA may be isolated by direct banding of whole virions in RbTCA gradients without prior phenol extraction. Strongly complexed or covalently bound proteins may be detected by their association with the buoyant polymer in the denaturing density gradient.
在中性pH值和室温条件下,水性RbTCA通常适合作为天然和变性DNA的浮力溶剂。例如,天然的PM - 2 DNA II在3.29 M盐、25摄氏度时具有浮力;而变性链在4.52 M时聚集在一起。该溶剂的两个特性使这个系统对于基于二级结构程度的分离特别有用。首先,化学未改变的DNA的解链转变温度被降低到室温或更低。其次,变性伴随的浮力密度增加非常大,PM - 2 DNA II为174 mg/ml。这个值是在水性NaI中发现的值的三倍,是CsCl中值的十倍。这里介绍的RbTCA浮力溶剂的特性包括组成和浮力密度梯度以及浮力密度对碱基组成的依赖性。如封闭环状DNA没有链断裂以及在转化试验中生物活性未受损所示,DNA在暴露于RbTCA后化学性质未改变。完整的病毒体DNA可以通过在RbTCA梯度中直接对整个病毒体进行分带而分离,无需事先进行酚提取。强复合或共价结合的蛋白质可以通过它们在变性密度梯度中与浮力聚合物的结合来检测。