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溴化乙锭与多核苷酸相互作用的平衡研究。

Equilibrium studies of ethidium--polynucleotide interactions.

作者信息

Bresloff J L, Crothers D M

出版信息

Biochemistry. 1981 Jun 9;20(12):3547-53. doi: 10.1021/bi00515a038.

Abstract

We report equilibrium dialysis studies of the binding of ethidium to a variety of double-helical synthetic polynucleotides containing A.U (or T) and I.C base pairs. The results are interpreted in terms of the neighbor exclusion model of drug binding, with allowance both for cooperativity of binding and for a structural switch of the helix to a different form which binds the drug more effectively. Both DNA and the alternating copolymers examined [poly[d(A-T)] and poly[d(I-C)]] showed high affinity (10(4)--10(5) M-1) in 1 M salt. Homopolynucleotides showed a more complicated pattern of affinities: poly(rA).poly(rU), poly(rA).poly(dT), and poly(dA).poly(rU) showed high affinity, whereas poly(dA).poly(dT), poly(rI).poly(rC), and poly(dI).poly(dC) showed low affinity (less than or equal to 10(3) M-1). The neighbor exclusion range was inferred to be two base pairs for DNA or B family helices and three for RNA or A family helices. Generally, polynucleotides showed some cooperativity in their ethidium binding. The data reveal a switch of poly[d(I-C)] to a form able to bind ethidium more effectively.

摘要

我们报告了溴化乙锭与多种含有A·U(或T)和I·C碱基对的双螺旋合成多核苷酸结合的平衡透析研究。结果根据药物结合的邻位排斥模型进行解释,同时考虑了结合的协同性以及螺旋结构向更有效地结合药物的不同形式的转变。所研究的DNA和交替共聚物[聚[d(A - T)]和聚[d(I - C)]]在1 M盐中显示出高亲和力(10⁴ - 10⁵ M⁻¹)。同聚核苷酸显示出更复杂的亲和力模式:聚(rA)·聚(rU)、聚(rA)·聚(dT)和聚(dA)·聚(rU)显示出高亲和力,而聚(dA)·聚(dT)、聚(rI)·聚(rC)和聚(dI)·聚(dC)显示出低亲和力(小于或等于10³ M⁻¹)。推断DNA或B族螺旋的邻位排斥范围为两个碱基对,RNA或A族螺旋的邻位排斥范围为三个碱基对。一般来说,多核苷酸在其溴化乙锭结合中表现出一定的协同性。数据揭示了聚[d(I - C)]向一种能够更有效地结合溴化乙锭的形式的转变。

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