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环在放线菌素D类似物与单链DNA形成的发夹结构结合中的作用。

The role of the loop in binding of an actinomycin D analog to hairpins formed by single-stranded DNA.

作者信息

Wadkins R M, Tung C S, Vallone P M, Benight A S

机构信息

Johns Hopkins University School of Medicine, Department of Oncology, Baltimore, Maryland 21231, USA.

出版信息

Arch Biochem Biophys. 2000 Dec 1;384(1):199-203. doi: 10.1006/abbi.2000.2113.

Abstract

Our recent work has indicated that the potent antibiotic and antitumor agent actinomycin D has the ability to selectively bind and stabilize single-stranded DNA that is capable of adopting a hairpin conformation. This mechanism of DNA binding has been implicated in the drug's ability to inhibit transcription by HIV reverse transcriptase from single-stranded DNA templates. In this report, we studied the importance of the hairpin loop on the ability of the 7-amino analog of actinomycin D to selectively bind DNA hairpins. Binding dissociation constant (Kd) values were determined to be 0.22 +/- 0.11 microM for the hairpin formed from the single-stranded DNA 5'-AAAAAAATAGTTTTAAATATTTTTTT-3' (dubbed HP1). The hairpin stem without the loop resulted in binding with Kd = 2.6 +/- 0.9 microM. The drug showed low affinity for the HP1 strand fully duplexed to its complementary sequence (estimated to be at least Kd > 21 microM). Evaluation of 7-aminoactinomycin D binding to a library of thermodynamically characterized DNA hairpins revealed an affinity for the hairpin-forming sequence 5'-GGATACCCCCGTATCC-3' (dubbed ACC4) of Kd = 6.8 +/- 2.2 microM. Replacement of the terminal guanines of this sequence to generate 5'-ATATACCCCCGTATAT-3' resulted in a 10-fold increase in affinity for this hairpin compared to ACC4, to Kd = 0.74 +/- 0.06 microM. A molecular model of the ACC4actinomycin D complex reveals that significant interactions between the hairpin loop and the pentapeptide rings of the drug must occur during drug binding. Taken together, our data indicate that the composition of the stem-loop interface is critical for the selectivity of actinomycin D and its 7-amino analog for DNA hairpins and suggests that novel drugs may be designed based on selection for the desired hairpin composition.

摘要

我们最近的研究表明,强效抗生素和抗肿瘤药物放线菌素D能够选择性地结合并稳定能够形成发夹构象的单链DNA。这种DNA结合机制与该药物抑制HIV逆转录酶从单链DNA模板进行转录的能力有关。在本报告中,我们研究了发夹环对放线菌素D的7-氨基类似物选择性结合DNA发夹能力的重要性。对于由单链DNA 5'-AAAAAAATAGTTTTAAATATTTTTTT-3'形成的发夹(称为HP1),结合解离常数(Kd)值确定为0.22±0.11微摩尔。没有环的发夹茎结合时Kd = 2.6±0.9微摩尔。该药物对与其互补序列完全双链的HP1链显示出低亲和力(估计至少Kd> 21微摩尔)。对7-氨基放线菌素D与一组经过热力学表征的DNA发夹文库的结合评估显示,其对形成发夹的序列5'-GGATACCCCCGTATCC-3'(称为ACC4)的亲和力为Kd = 6.8±2.2微摩尔。将该序列的末端鸟嘌呤替换为5'-ATATACCCCCGTATAT-3',与ACC4相比,对该发夹的亲和力增加了10倍,达到Kd = 0.74±0.06微摩尔。ACC4-放线菌素D复合物的分子模型表明,在药物结合过程中,发夹环与药物的五肽环之间必须发生显著的相互作用。综上所述,我们的数据表明,茎环界面的组成对于放线菌素D及其7-氨基类似物对DNA发夹的选择性至关重要,并表明可以基于对所需发夹组成的选择来设计新型药物。

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