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一种新型完整环状双链DNA超螺旋。

A novel intact circular dsDNA supercoil.

作者信息

Wu R, Wu T

机构信息

Department of Biochemistry, Northwestern University, Evanston, IL 60208, USA.

出版信息

Bull Math Biol. 1996 Nov;58(6):1171-85. doi: 10.1007/BF02458388.

Abstract

A novel intact circular dsDNA supercoil is proposed as an alternative to the conventional DNA supercoil, so that the two complementary strands of ssDNA circles are separable without any covalent bond breakage. This new structure can be visualized by using two tubings: one black and one clear. Twist the black tubing a number of times and connect its two ends. Do the same for the clear tubing. Then wrap the two tubings together. This forms the separable or novel supercoil. On the other hand, the conventional supercoil can be modeled by twisting the black and clear tubings together and then connect their respective ends, so that the two tubings are not separable unless one of them is cut. Experimentally, in the absence of any enzyme, many intact plasmid dsDNA circles give two bands on agarose gel electrophoresis under a certain given condition, while the same plasmid molecules after cutting once by a restriction enzyme give only one band under the same condition. In the case of intact pUC19 plasmids, these two bands can then be recovered and sequenced separately, using two primers in opposite directions. Each band gives mostly one sequence which is complementary to that of the other band. The combination of the above theoretical model and experimental results strongly suggests that there is an alternative structure of DNA which does not have the usual difficulty of unwinding, rewinding and requiring numerous covalent bond breakages and ligations during semiconservative.

摘要

一种新型完整环状双链DNA超螺旋被提出作为传统DNA超螺旋的替代物,这样单链DNA环的两条互补链可以在不发生任何共价键断裂的情况下分离。这种新结构可以通过使用两根管子来可视化:一根黑色,一根透明。将黑色管子拧若干次并连接其两端。对透明管子也做同样的操作。然后将两根管子缠绕在一起。这就形成了可分离的或新型的超螺旋。另一方面,传统超螺旋可以通过将黑色和透明管子拧在一起然后连接它们各自的末端来模拟,这样除非切断其中一根,两根管子是不可分离的。在实验中,在没有任何酶的情况下,许多完整的质粒双链DNA环在特定给定条件下在琼脂糖凝胶电泳中给出两条带,而同一质粒分子经限制性酶切割一次后在相同条件下只给出一条带。对于完整的pUC19质粒,然后可以回收这两条带并分别测序,使用两个方向相反的引物。每条带大多给出一个与另一条带互补的序列。上述理论模型和实验结果的结合有力地表明,存在一种DNA的替代结构,它在半保留过程中不存在通常的解旋、重新缠绕困难,也不需要大量共价键的断裂和连接。

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