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通过圆二色性研究酒精诱导的不同碱基组成DNA的B-A转变。

Alcohol induced B-A transition of DNAs with different base compositions studied by circular dichroism.

作者信息

Nara-Inui H, Akutsu H, Kyogoku Y

出版信息

J Biochem. 1985 Sep;98(3):629-36. doi: 10.1093/oxfordjournals.jbchem.a135319.

Abstract

The circular dichroic (CD) spectra of natural DNAs (from Cl. perfringens, T2 phage, calf thymus, E. coli, and M. lysodeikticus) as well as duplexes of synthetic DNAs (poly(dA) X poly(dT), poly(dA-dT), and poly(dG-dC] were measured in water-ethanol mixtures with 0.3 mM NaCl. A conformational change from the B to the A form was observed for the natural DNAs on adding ethanol. The ethanol concentration that induces the transition and the extent of the change in the CD spectrum are different for the five natural DNAs depending on their GC contents. The higher the GC content is, the more easily the transition to the A form takes place. The results indicate that the GC content of a DNA is an important factor for induction of the B-A transition. The results for the synthetic DNAs show that their properties cannot be inferred by simple extrapolation of those of natural DNAs. Coexisting ions and the molecular weight of a DNA were also found to affect the induction of the B-A transition.

摘要

在含有0.3 mM氯化钠的水 - 乙醇混合物中,测量了天然DNA(来自产气荚膜梭菌、T2噬菌体、小牛胸腺、大肠杆菌和溶壁微球菌)以及合成DNA双链体(聚(dA)×聚(dT)、聚(dA - dT)和聚(dG - dC))的圆二色性(CD)光谱。加入乙醇后,观察到天然DNA从B型构象转变为A型构象。对于这五种天然DNA,诱导转变的乙醇浓度和CD光谱的变化程度因其GC含量而异。GC含量越高,向A型构象转变越容易发生。结果表明,DNA的GC含量是诱导B - A转变的一个重要因素。合成DNA的结果表明,不能通过简单外推天然DNA的性质来推断其性质。还发现共存离子和DNA的分子量也会影响B - A转变的诱导。

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