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锌对不同长度的d(GA.TC)n DNA序列二级结构的影响:一种H-DNA形成模型

The effect of zinc on the secondary structure of d(GA.TC)n DNA sequences of different length: a model for the formation *H-DNA.

作者信息

Martínez-Balbás A, Azorín F

机构信息

Departamento de Biología Molecular y Celular, CSIC, Barcelona, Spain.

出版信息

Nucleic Acids Res. 1993 Jun 11;21(11):2557-62. doi: 10.1093/nar/21.11.2557.

Abstract

Alternating d(GA.TC)n DNA sequences are known to undergo transition to *H-DNA in the presence of zinc. Here, the effect of zinc on the secondary DNA structure of d(GA.TC)n sequences of different length (n = 5, 8, 10 and 19) was determined. Short d(GA.TC)n sequences form *H-DNA with a higher difficulty than longer ones. At bacterial negative superhelical density (- sigma = 0.05), zinc still induces transition to the *H-DNA conformation at a d(GA.TC)10 sequence but shorter sequences do not form *H-DNA. Transition to *H-DNA at a d(GA.TC)8 sequence is observed under conditions which destabilize the DNA double helix such as high negative supercoiling or low ionic strength. Our results indicate that a first step in the transition to *H-DNA is the formation of a denaturation bubble at the centre of the repeated DNA sequence, suggesting that the primary role of zinc is to induce a local denaturation of the DNA double helix. Subsequently, zinc might also participate in the stabilization of the altered DNA conformation through its direct interaction with the bases. Based on these results a model for the formation of *H-DNA is proposed.

摘要

已知交替的d(GA.TC)n DNA序列在锌存在的情况下会转变为H-DNA。在此,研究了锌对不同长度(n = 5、8、10和19)的d(GA.TC)n序列二级DNA结构的影响。短的d(GA.TC)n序列形成H-DNA的难度比长序列更高。在细菌负超螺旋密度(-σ = 0.05)下,锌仍能诱导d(GA.TC)10序列转变为H-DNA构象,但较短的序列不会形成H-DNA。在使DNA双螺旋不稳定的条件下,如高负超螺旋或低离子强度下,可观察到d(GA.TC)8序列转变为H-DNA。我们的结果表明,向H-DNA转变的第一步是在重复DNA序列的中心形成一个变性泡,这表明锌的主要作用是诱导DNA双螺旋的局部变性。随后,锌也可能通过与碱基的直接相互作用参与改变后的DNA构象的稳定。基于这些结果,提出了一个H-DNA形成的模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/703e/309581/db0403408325/nar00060-0030-a.jpg

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