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The circular dichroism and X-ray diffraction of DNA condensed from ethanolic solutions

机译:从乙醇溶液中缩合的DNA的圆形二中间和X射线衍射

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摘要

It is known that DNA in aqueous-ethanol solutions undergoes a B to A conformational change between 60% and 80% (w/w) ethanol. We have found that precipitates formed by adding salt to DNA in 60% and 80% ethanolic solutions can be very different. DNA precipitated from 60% ethanol forms a fine condensate that only slowly settles out of suspension and shows a characteristic differential scattering of circularly polarized light at long wavelengths. DNA precipitated from 80% ethanol forms a flocculent aggregate that exhibits the CD spectral features of the A conformation. Data from circular dichroism spectra of natural and synthetic nucleic acids and from X-ray diffraction patterns of the precipitates show that DNA molecules precipitated from 60% and 80% ethanol are, respectively, in the B and A conformation. Therefore, the different secondary conformations of DNA in ethanolic solutions are maintained during precipitation under these conditions. These results are of general importance for the preparation and study of condensed forms of DNA, since a relatively small change in the extent of dehydration can change the secondary conformation of DNA and markedly affect the character of a subsequent precipitate.
机译:已知在乙醇溶液中的DNA经历A B至60%至80%(w / w)乙醇之间的构象变化。我们发现通过在60%和80%乙醇溶液中加入盐与DNA形成的沉淀物可以非常不同。从60%乙醇中沉淀的DNA形成精细缩合物,其仅缓慢地沉积在悬浮液中,并以长波长表示圆偏振光的特征差异散射。从80%乙醇中沉淀的DNA形成絮凝聚集体,其表现出符合构象的CD光谱特征。来自天然和合成核酸的圆形二色性光谱的数据以及沉淀物的X射线衍射图案表明,在B和构象中,分别从60%和80%乙醇中沉淀出DNA分子。因此,在这些条件下在沉淀过程中保持乙醇溶液中DNA的不同二次构象。这些结果一般是对缩合形式的DNA的制备和研究的重要性,因为脱水程度的相对较小的变化可以改变DNA的二次构象并显着影响随后的沉淀物的特征。

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