Yonezawa A, Kuwahara J, Fujii N, Sugiura Y
Institute for Chemical Research, Kyoto University, Japan.
Biochemistry. 1992 Mar 24;31(11):2998-3004. doi: 10.1021/bi00126a022.
In view of the cationic amphipathic structure of tachyplesin I and antiparallel beta-sheet as a general DNA binding motif, DNA binding of the antimicrobial peptide has been examined. Several footprinting-like techniques using DNase I protection, dimethyl sulfate protection, and bleomycin- (BLM-) induced DNA cleavage were applied in this study. Some distinct footprints with DNase I are detected, and also the sequence-specific cleavage mode of the BLM-Fe(II) complex clearly is altered in the presence of tachyplesin I. In addition, methylation of the N-7 residue of guanine situated in the DNA major groove is not entirely inhibited (or activated) by tachyplesin I. The results suggest that tachyplesin I interacts with the minor groove of DNA duplex. Disappearance of the footprints by dithiothreitol-treated tachyplesin I and Ala-tachyplesin strongly suggests a significant contribution of secondary structure containing an antiparallel beta-sheet to the DNA binding of tachyplesin I. This is the first report on DNA interaction with a small peptide which contains a unique antiparallel beta-sheet structure. The mechanism for antimicrobial action of tachyplesin I has also been inferred.
鉴于鲎素I的阳离子两亲结构以及作为一种常见DNA结合基序的反平行β-折叠,对该抗菌肽的DNA结合情况进行了研究。本研究采用了几种类似足迹法的技术,包括DNase I保护、硫酸二甲酯保护以及博来霉素(BLM)诱导的DNA切割。检测到了一些由DNase I产生的明显足迹,并且在鲎素I存在的情况下,BLM-Fe(II)复合物的序列特异性切割模式也明显改变。此外,位于DNA大沟中的鸟嘌呤N-7残基的甲基化并未被鲎素I完全抑制(或激活)。结果表明鲎素I与DNA双链体的小沟相互作用。经二硫苏糖醇处理的鲎素I和丙氨酸-鲎素导致足迹消失,这强烈表明含有反平行β-折叠的二级结构对鲎素I的DNA结合有重要贡献。这是关于一种含有独特反平行β-折叠结构的小肽与DNA相互作用的首次报道。同时也推断了鲎素I的抗菌作用机制。