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在尿素或甲醛存在下脱氧核糖核酸变性的分光光度研究及其与单链多核苷酸二级结构的相关性。

A spectrophotometric study of the denaturation of deoxyribonucleic acid in the presence of urea or formaldehyde and its relevance to the secondary structure of single-stranded polynucleotides.

作者信息

Cox R A, Kanagalingam K

出版信息

Biochem J. 1968 Jul;108(4):599-610. doi: 10.1042/bj1080599.

Abstract
  1. The thermal denaturation of DNA from rat liver was studied spectrophotometrically. In sodium phosphate buffers denaturation led to a single-stranded form having, at 25 degrees , about 25% of the hypochromism of the intact double helix. 2. The hypochromism of the denatured form was the same in 1mm- as in 10mm-sodium phosphate buffer and was scarcely affected by reaction with formaldehyde. The hypochromism was decreased by about 40% in the presence of 8m-urea. 3. The hypochromism of denatured DNA at low ionic strengths was about the same as that of fragments of reticulocyte ribosomal RNA that were too short to form double-helical secondary structure and about the same as that of RNA after reaction with formaldehyde. 4. The spectrum of DNA was slightly affected by the presence of 8m-urea or 4m-guanidinium chloride. The differences in the spectrum of the native and denatured forms of DNA in 0.1m-sodium phosphate buffer, in 8m-urea-10mm-sodium phosphate buffer and in 4m-guanidinium chloride-10mm-sodium phosphate buffer, pH7.6, were similar but not identical. 5. Denatured rat liver DNA appears to have no double-helical character at 25 degrees in 10mm-sodium phosphate buffer, pH7.6; increasing the buffer concentration to 0.1m leads to a more compact form in which about 40% of the residues form base pairs.
摘要
  1. 采用分光光度法研究了大鼠肝脏DNA的热变性。在磷酸钠缓冲液中,变性导致形成单链形式,在25℃时,其减色效应约为完整双螺旋的25%。2. 变性形式在1mM和10mM磷酸钠缓冲液中的减色效应相同,与甲醛反应几乎不影响其减色效应。在8M尿素存在下,减色效应降低约40%。3. 低离子强度下变性DNA的减色效应与网织红细胞核糖体RNA片段(太短而无法形成双螺旋二级结构)的减色效应大致相同,也与甲醛反应后RNA的减色效应大致相同。4. 8M尿素或4M氯化胍的存在对DNA光谱有轻微影响。在pH7.6的0.1M磷酸钠缓冲液、8M尿素-10mM磷酸钠缓冲液和4M氯化胍-10mM磷酸钠缓冲液中,天然和变性形式的DNA光谱差异相似但不完全相同。5. 在pH7.6的10mM磷酸钠缓冲液中,变性大鼠肝脏DNA在25℃时似乎没有双螺旋特征;将缓冲液浓度增加到0.1M会导致形成更紧密的形式,其中约40%的残基形成碱基对。

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