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首页> 外文期刊>Zeitschrift fur Naturforschung, C. A Journal of Biosciences >Copper-binding peptides from human prion protein and newly designed peroxidative biocatalysts
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Copper-binding peptides from human prion protein and newly designed peroxidative biocatalysts

机译:人类病毒蛋白的铜结合肽和新设计的过氧化生物催化剂

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摘要

A previous work suggested that peptides from the histidine-containing copper-binding motifs in human prion protein (PrP) function as peroxidase-like biocatalysts catalyzing the generation of superoxide anion radicals in the presence of neurotransmitters (aromatic monoamines) and phenolics such as tyrosine and tyrosyl residues on proteins. In this study, using various phenolic substrates, the phenol-dependent superoxide-generating activities of PrP-derived peptide sequences were compared. Among the peptides tested, the GGGTH pentapeptide was shown to be the most active catalyst for phenol-dependent reactions. Based on these results, we designed a series of oligoglycyl-histidines as novel peroxidative biocatalysts, and their catalytic performances including kinetics, heat tolerance, and freezing tolerance were analysed.
机译:先前的工作表明,在人类递质蛋白(PrP)中含组氨酸的铜结合基序中的肽起过氧化物酶样生物催化剂的作用,在存在神经递质(芳香族单胺)和酚类化合物(如酪氨酸和酪氨酸)的情况下催化超氧阴离子自由基的产生。蛋白质上的酪氨酰残基。在这项研究中,使用各种酚类底物,比较了PrP衍生肽序列的酚依赖性超氧化物生成活性。在测试的肽中,GGGTH五肽被证明是酚依赖性反应最活跃的催化剂。基于这些结果,我们设计了一系列寡糖基组氨酸作为新型的过氧化生物催化剂,并分析了它们的催化性能,包括动力学,耐热性和耐冷冻性。

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