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藻蓝蛋白素与过氧化氢酶的结合保护了色素不被氧化,同时不影响其催化活性。

Nutraceutical phycocyanobilin binding to catalase protects the pigment from oxidation without affecting catalytic activity.

机构信息

INEP Institute for Application of Nuclear Energy, University of Belgrade, Belgrade-Zemun, Serbia.

Department of Biochemistry & Center of Excellence for Molecular Food Sciences, University of Belgrade - Faculty of Chemistry, Belgrade, Serbia.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2021 Apr 15;251:119483. doi: 10.1016/j.saa.2021.119483. Epub 2021 Jan 18.

Abstract

Phycocyanobilin is a dark blue linear tetrapyrrole chromophore covalently attached to protein subunits of phycobiliproteins present in the light-harvesting complexes of the cyanobacteria Arthrospira platensis (Spirulina "superfood"). It shows exceptional health-promoting properties and emerging use in various fields of bioscience and industry. This study aims to examine the mutual impact of phycocyanobilin interactions with catalase, a life-essential antioxidant enzyme. Fluorescence quenching experiments demonstrated moderate binding (K of 3.9 × 10 M at 25 °C; n = 0.89) (static type), while van't Hoff plot points to an enthalpically driven ligand binding (ΔG = -28.2 kJ mol; ΔH = -41.9 kJ mol). No significant changes in protein secondary structures (α-helix content 22%) and thermal protein stability in terms of enzyme tetramer subunits (T ~ 64 °C) were detected upon ligand binding. Alterations in the tertiary catalase structure were found without adverse effects on enzyme activity (2 × 10 IU/mL). The docking study results indicated that the ligand most likely binds to amino acid residues (Asn141, Arg 362, Tyr369 and Asn384) near the cavity between the enzyme homotetramer subunits not related to the active site. Finally, complex formation protects the pigment from free-radical induced oxidation (bleaching), suggesting possible prolongation of its half-life and bioactivity in vivo if bound to catalase.

摘要

藻蓝胆素是一种深蓝色的线性四吡咯发色团,通过共价键与蓝细菌节旋藻(螺旋藻“超级食品”)中的光捕获复合物中的藻蓝蛋白的蛋白亚基相连。它具有特殊的促进健康的特性,并在生物科学和工业的各个领域中得到新兴应用。本研究旨在研究藻蓝胆素与过氧化氢酶(一种生命必需的抗氧化酶)相互作用的相互影响。荧光猝灭实验表明存在中等强度的结合(25°C 时 K 为 3.9×10 M,n=0.89;静态类型),而范特霍夫图表明配体结合是焓驱动的(ΔG=-28.2 kJ/mol;ΔH=-41.9 kJ/mol)。在配体结合时,未检测到蛋白质二级结构(α-螺旋含量约为 22%)和酶四聚体亚基热稳定性(T64°C)有明显变化。发现三级过氧化氢酶结构发生变化,但对酶活性(2×10 IU/mL)没有不利影响。对接研究结果表明,配体很可能结合到酶同源四聚体亚基之间空腔附近与活性位点无关的氨基酸残基(Asn141、Arg 362、Tyr369 和 Asn384)上。最后,复合物的形成保护了色素免受自由基诱导的氧化(漂白),这表明如果与过氧化氢酶结合,其半衰期和体内生物活性可能会延长。

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