Wadkins R M, Vladu B, Tung C S
Laboratory of Biophysical Chemistry, Cancer Therapy and Research Center, Institute for Drug Development, San Antonio, Texas 78245, USA.
Biochemistry. 1998 Aug 25;37(34):11915-23. doi: 10.1021/bi9809730.
We have examined the role of DNA composition in the binding of actinomycin D to single-stranded DNA. By using the fluorescent analogue 7-aminoactinomycin D, we were able to monitor binding of the drug to ssDNA with single base changes distant from the 5'-TAGT-3' site previously determined to be a high-affinity site for actinomycin D binding (Wadkins et al. (1996) J. Mol. Biol. 262, 53-68). Our binding studies indicated that secondary structures in the ssDNA were likely to be responsible for binding the drug. A series of six low-melting DNA hairpins containing all or part of the 5'-TAGT-3' binding site were synthesized. The highest Tm observed for the melting of these hairpins was 34.2 +/- 0.3 degrees C, and it depended on the length of the stem region. These metastable hairpins were stabilized by 7-aminoactinomycin D, with the drug shifting the Tm for the drug-hairpin complex to approximately 45 degrees C. The hairpins showed very high affinity (Kd approximately 0.1 microM) for 7-aminoactinomycin D, with some dependence on stem length. Digestion of the hairpins in the presence and absence of drug using mung bean nuclease, which specifically interacts with the loop region of hairpin DNA, revealed that the stable hairpins (i) contain a number of non-Watson-Crick base pairs, and (ii) undergo a conformational change in the loop region upon binding 7-aminoactinomycin D. Our results suggest that stabilization of unusual hairpins by actinomycin D may be an important aspect of the potent transcription inhibition activity of this drug.
我们研究了DNA组成在放线菌素D与单链DNA结合中的作用。通过使用荧光类似物7-氨基放线菌素D,我们能够监测该药物与单链DNA的结合情况,单链DNA上的单个碱基变化距离先前确定的放线菌素D高亲和力结合位点5'-TAGT-3'较远(Wadkins等人,(1996年)《分子生物学杂志》262卷,53 - 68页)。我们的结合研究表明,单链DNA中的二级结构可能负责药物的结合。合成了一系列六个低熔点DNA发夹,它们包含全部或部分5'-TAGT-3'结合位点。观察到这些发夹解链的最高熔解温度为34.2±0.3℃,并且它取决于茎区的长度。这些亚稳发夹被7-氨基放线菌素D稳定,该药物使药物-发夹复合物的熔解温度转变至约45℃。这些发夹对7-氨基放线菌素D表现出非常高的亲和力(解离常数约为0.1μM),对茎的长度有一定依赖性。使用绿豆核酸酶在有或无药物存在的情况下消化发夹,绿豆核酸酶特异性地与发夹DNA的环区相互作用,结果表明稳定的发夹(i)包含许多非沃森-克里克碱基对,并且(ii)在结合7-氨基放线菌素D时环区会发生构象变化。我们的结果表明,放线菌素D对异常发夹的稳定作用可能是该药物强大转录抑制活性的一个重要方面。