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首页> 外文期刊>Biochemistry >Combinatorial optimization of the DNA cleaving Ni(II) x Xaa-Xaa-His metallotripeptide domain.
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Combinatorial optimization of the DNA cleaving Ni(II) x Xaa-Xaa-His metallotripeptide domain.

机译:切割Ni(II)x Xaa-Xaa-His金属三肽结构域的DNA的组合优化。

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A positional-scanning combinatorial protocol was employed to optimize the deoxyribose-based cleavage of B-form DNA by Ni(II) x Xaa-Xaa-His metallopeptides. This procedure employed 18 naturally occurring amino acids (excluding Cys and Trp) to generate two libraries in which the first and second positions of the peptide ligand were varied. Increased direct DNA cleavage relative to Ni(II) x Gly-Gly-His was observed when (1) the amino-terminal peptide position contained Pro, Met, Arg, or Lys (with Pro exhibiting the greatest activity) and (2) the second peptide position contained Lys, Arg, Met, Ser, or Thr (with Lys exhibiting the greatest activity); the optimized metallopeptide, Ni(II) x Pro-Lys-His, was found to cleave DNA an order of magnitude better than Ni(II) x Gly-Gly-His. While metal complexation and the A/T-rich site selectivity of the optimized metallopeptides were not altered, DNA binding affinity was slightly increased relative to Ni(II) x Gly-Gly-His, however, not to an extent necessary to account for the observed increase in reactivity. Examination of molecular models of Ni(II) x Pro-Lys-His bound to the minor groove of DNA via hydrogen bonding of the His N3 imidazole hydrogen to the N3 of adenine or O2 of thymine suggests that the Pro residue can make hydrophobic contacts with the sugars lining the walls of the groove while the Lys residue is able to form a salt bridge with a proximal phosphate; with these interactions, the metal center is poised to abstract the C4'-H of an adjacent nucleotide suggesting that noncovalent interactions result in a positioning which contributes to increased DNA cleavage activity.
机译:位置扫描组合协议用于优化Ni(II)x Xaa-Xaa-His金属肽对B型DNA的基于脱氧核糖的裂解。该程序使用18种天然氨基酸(不包括Cys和Trp)生成两个文库,其中肽配体的第一和第二位置发生了变化。相对于Ni(II)x Gly-Gly-His,当(1)氨基末端肽位置含有Pro,Met,Arg或Lys(其中Pro表现出最大的活性)和(2)第二个肽位置包含Lys,Arg,Met,Ser或Thr(Lys表现出最大的活性);发现优化的金属肽Ni(II)x Pro-Lys-His可以比Ni(II)x Gly-Gly-His更好地切割DNA。尽管优化的金属肽的金属络合和富A / T的位点选择性没有改变,但DNA结合亲和力相对于Ni(II)x Gly-Gly-His略有增加,但是,没有达到考虑到观察到反应性增加。 Ni(II)x Pro-Lys-His通过His N3咪唑氢与腺嘌呤的N3或胸腺嘧啶的O2的氢键结合而与DNA小沟结合的分子模型的研究表明,Pro残基可以与糖衬在凹槽壁上,而赖氨酸残基能够与近端磷酸盐形成盐桥;通过这些相互作用,金属中心有望抽象出相邻核苷酸的C4'-H,这表明非共价相互作用会导致定位,从而有助于增加DNA的切割活性。

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