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通过脱水解开双链DNA螺旋。

Unwinding of double-stranded DNA helix by dehydration.

作者信息

Lee C H, Mizusawa H, Kakefuda T

出版信息

Proc Natl Acad Sci U S A. 1981 May;78(5):2838-42. doi: 10.1073/pnas.78.5.2838.

Abstract

Conformation changes of the double-stranded DNA helix in response to dehydration were investigated by monitoring, by agarose gel electrophoresis, the linking number of covalently closed circular DNA generated by ligation of linear DNA in the presence of different organic solvents or different temperatures. It was found that: (i) The DNA helix unwinds upon addition of certain organic solvents or elevation of temperature. (ii) The conformational change observed under the experimental conditions is a continuous process in response to the organic solvent concentration. (iii) The delta H of unwinding one linking of the DNA helix is constant at approximately 12.2 +/- 0.4 kcal/mol (1 kcal = 4.184 kJ); the corresponding delta S and d(delta S)/dn are 2nkR and 2kR, in which n is the relative equivalent linking number (referred to the state of delta S = 0 for unwinding) of the DNA, R is the gas constant, and k is equal to 1117/number of base pairs. The delta H, delta S, and d(delta S)/dn for unwinding i linkings are i X 12.2 kcal/mol, 2inkR, and 2ikR, respectively. (iv) d(delta S)/dn, like k, is inversely proportional to the number of base pairs in DNA. (v) Double-stranded DNAs of different chain lengths have average delta S = 35 cal/mol.K for unwinding one linking under the experimental conditions; this corresponds to 127 +/- 14 base pairs per "relative linking."

摘要

通过琼脂糖凝胶电泳监测在不同有机溶剂或不同温度存在下线性DNA连接产生的共价闭合环状DNA的连环数,研究了双链DNA螺旋对脱水的构象变化。结果发现:(i)加入某些有机溶剂或升高温度时,DNA螺旋会解旋。(ii)在实验条件下观察到的构象变化是对有机溶剂浓度的连续响应过程。(iii)DNA螺旋解开一个连环的ΔH约为12.2±0.4千卡/摩尔(1千卡 = 4.184千焦)恒定不变;相应的ΔS和d(ΔS)/dn分别为2nkR和2kR,其中n是DNA的相对等效连环数(相对于解旋时ΔS = 0的状态),R是气体常数,k等于1117/碱基对数。解开i个连环的ΔH、ΔS和d(ΔS)/dn分别为i×12.2千卡/摩尔、2inkR和2ikR。(iv)d(ΔS)/dn与k一样,与DNA中的碱基对数成反比。(v)在实验条件下,不同链长的双链DNA解开一个连环的平均ΔS = 35卡/摩尔·开尔文;这相当于每“相对连环”有127±14个碱基对。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e4f1/319453/042cb3491a7f/pnas00656-0213-a.jpg

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