Rao K E, Dasgupta D, Sasisekharan V
Molecular Biophysics Unit, Indian Institute of Science, Bangalore.
Biochemistry. 1988 Apr 19;27(8):3018-24. doi: 10.1021/bi00408a053.
Distamycin and netropsin, a class of minor groove binding nonintercalating agents, are characterized by their B-DNA and A-T base-specific interactions. To understand the conformational and chemical basis of the above specificities, the DNA-binding characteristics of a novel synthetic analogue of distamycin have been studied. The analogue, mPD derivative, has the requisite charged end groups and a number of potential hydrogen-bonding loci equal to those of distamycin. The difference in the backbone curvatures of the ligands, distamycin, the mPD derivative, and NSC 101327 (another structurally analogous compound), is a major difference between these ligands. UV and CD spectroscopic studies reported here show the following salient features: The mPD derivative recognizes only B-DNA, to which it binds via the minor groove. On the other hand, unlike distamycin, it binds with comparable affinities to A-T and G-C base pairs in a natural DNA. These DNA-binding properties are compared with those reported earlier for distamycin and NSC 101327 [Zimmer, Ch., & Wahnert, U. (1986) Prog. Biophys. Mol. Biol. 47, 31-112]. The backbone structures of these three ligands were compared to show the progressive decrease in curvatures in the order distamycin, mPD derivative, and NSC 101327. The plausible significance of the backbone curvature vis-à-vis the characteristic B-DNA and AT-specific binding of distamycin is discussed. To our knowledge, this is the first attempt (with a model synthetic analogue) to probe the possible influence of backbone curvature upon the specificity of interactions of the distamycin class of groove-binding ligands with DNA.
偏端霉素和纺锤菌素是一类与小沟结合的非嵌入剂,其特点是与B - DNA和A - T碱基有特异性相互作用。为了解上述特异性的构象和化学基础,对一种新型偏端霉素合成类似物的DNA结合特性进行了研究。该类似物mPD衍生物具有必需的带电端基和与偏端霉素数量相等的潜在氢键位点。配体偏端霉素、mPD衍生物和NSC 101327(另一种结构类似的化合物)主链曲率的差异是这些配体之间的主要区别。本文报道的紫外和圆二色光谱研究显示了以下显著特征:mPD衍生物只识别B - DNA,并通过小沟与之结合。另一方面,与偏端霉素不同,它以相当的亲和力与天然DNA中的A - T和G - C碱基对结合。将这些DNA结合特性与先前报道的偏端霉素和NSC 101327的特性进行了比较[齐默尔,C.,& 瓦纳特,U.(1986年)《生物物理与分子生物学进展》47,31 - 112]。比较了这三种配体的主链结构,结果表明曲率按偏端霉素、mPD衍生物和NSC 101327的顺序逐渐减小。讨论了主链曲率相对于偏端霉素特征性的B - DNA和AT特异性结合的合理意义。据我们所知,这是首次尝试(使用模型合成类似物)探究主链曲率对偏端霉素类小沟结合配体与DNA相互作用特异性的可能影响。