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放线菌素A3与DNA序列特异性结合的寡核苷酸研究。

Oligonucleotide studies of sequence-specific binding of chromomycin A3 to DNA.

作者信息

Liu C, Chen F M

机构信息

Department of Chemistry, Tennessee State University, Nashville 37209-1561.

出版信息

Biochemistry. 1994 Feb 15;33(6):1419-24. doi: 10.1021/bi00172a019.

Abstract

Systematic kinetic, equilibrium binding, melting, and electrophoretic studies were carried out with oligonucleotides to determine the sequence specificities of chromomycin A3 (CHR) binding to DNA at the self-complementary tetranucleotide level. Decamers of the forms d(GTA-XGCY-TAC) and d(GTA-XCGY-TAC), with X, Y = A, G, C, or T, were used for this purpose. Results indicate that the binding preferences for CHR are in the order -GGCC- > -CGCG- > -GCGC-, -CCGG- > -AGCT- > -ACGT-, -TGCA- > -TCGA-. Detergent-induced drug dissociation studies revealed that CHR dissociates very slowly from both -GGCC- and -CGCG- sequences, with the former being measurably slower than the latter which in turn is at least an order of magnitude slower than the rest of the sequences. Thermal denaturation measurements indicate that the binding of CHR stabilizes the DNA duplex, with -GGCC- and -CGCG- exhibiting the largest effects. Results of gel electrophoretic retardation experiments support our general findings on the relative binding order. Our experimental results support earlier NMR findings by other researchers implicating the preference of aureolic acid drugs at the 5'GC3' step and further reveal significant modulations by the adjacent base pairs. Attempts were made to rationalize our results with the known detailed structural information from NMR studies.

摘要

我们对寡核苷酸进行了系统的动力学、平衡结合、熔解和电泳研究,以确定在自互补四核苷酸水平上色霉素A3(CHR)与DNA结合的序列特异性。为此使用了d(GTA-XGCY-TAC)和d(GTA-XCGY-TAC)形式的十聚体,其中X、Y = A、G、C或T。结果表明,CHR的结合偏好顺序为-G GCC- > -CGCG- > -GCGC-,-CCGG- > -AGCT- > -ACGT-,-TGCA- > -TCGA-。去污剂诱导的药物解离研究表明,CHR从-G GCC-和-CGCG-序列解离非常缓慢,前者比后者明显更慢,而后者又比其他序列至少慢一个数量级。热变性测量表明,CHR的结合使DNA双链稳定,-G GCC-和-CGCG-表现出最大的影响。凝胶电泳阻滞实验结果支持了我们关于相对结合顺序的总体发现。我们的实验结果支持了其他研究人员早期的核磁共振研究结果,这些结果表明金霉素类药物在5'GC3'步骤上的偏好,并进一步揭示了相邻碱基对的显著调节作用。我们试图根据核磁共振研究中已知的详细结构信息来解释我们的结果。

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