首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Purification and characterization of catechol oxidase from Tadela (Phoenix dactylifera L.) date fruit
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Purification and characterization of catechol oxidase from Tadela (Phoenix dactylifera L.) date fruit

机译:特拉(Phoenix Dactylifera L.)日果汁儿茶酚氧化酶的纯化与表征。

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Catechol oxidase (PPO) was extracted and purified from Tadela (Phoenix dactylifera L) date fruit, by a procedure that included (NH4)(2)SO4 precipitation followed by dialysis, Q-Sepharose bb ion-exchange chromatography and HPLC gel filtration chromatography. Some of its biochemical characteristics were studied. The purification rate and the yield were 80% and 20%, respectively. The Tadela date fruit catechol oxidase exhibited a molecular weight of 90 kDa using SDS-PAGE. The catechol oxidase showed only o-diphenolase and triphenolase activities while no monophenolase activity was detected. A better affinity was observed using catechol as substrate (Km = 35 mM) with thus, a higher Vmax/Km ratio (80 U/mM.mL). This enzyme is thermostable in the temperature range (30-60 degrees C) with optimum activity in acidic range of pH. Four inhibitors were used for the control of enzymatic browning, of which sodium metabisulfite was the most potent (IC50 = 0,11 mM). The values of K-i and mechanism of inhibition were also determined. No significant change on enzyme activity was noticed in the presence of metal ion and detergents. Therefore, thermal inactivation was studied in the temperature range between 60 and 80 degrees C using catechol as substrate. Their kinetic (K, D, t(1/2), Zt, Ea) and thermodynamic (Delta H, Delta G and Delta S) parameters were also estimated. (C) 2018 Elsevier B.V. All rights reserved.
机译:通过包括(NH 4)(2)SO4沉淀的方法从Tadela(Phoenix Dactylifera L)日果汁中提取并纯化的儿茶酚氧化酶(PPO),然后用透析,Q-Sepharose BB离子交换色谱和HPLC凝胶过滤色谱法从胫骨(NH4)(2)(2)(2)SO4沉淀下纯化。研究了一些生物化学特征。纯化率和产率分别为80%和20%。 Tadela日期果实儿茶酚氧化酶使用SDS-PAGE显示出90kDa的分子量。儿茶酚氧化酶仅显示O-二酚酶和三酚酶活性,而没有检测到单蛋白酶活性。使用儿茶酚作为基质(Km = 35mm)观察到更好的亲和力,因此较高的VMAX / Km比(80 U / mm.ml)。该酶在温度范围(30-60℃)中热稳定,具有最佳活性在酸性的pH范围内。使用四种抑制剂用于对酶褐变的控制,其中甲基硫酸钠是最有效的(IC50 = 0.11mm)。还确定了K-1的值和抑制机制。在金属离子和洗涤剂存在下,注意到酶活性没有显着变化。因此,使用儿茶酚作为基质在60至80℃的温度范围内研究热失活。还估计了它们的动力学(K,D,T(1/2),ZT,EA)和热力学(Delta H,Delta G和Delta S)参数。 (c)2018年elestvier b.v.保留所有权利。

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