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首页> 外文期刊>LWT-Food Science & Technology >Purification, characterization and enzymatic synthesis of theaflavins of polyphenol oxidase isozymes from tea leaf (Camellia sinensis)
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Purification, characterization and enzymatic synthesis of theaflavins of polyphenol oxidase isozymes from tea leaf (Camellia sinensis)

机译:茶叶(Camellia Sinensis)中多酚氧化酶同工酶籽藻素纯化,表征和酶促合成

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摘要

Polyphenol oxidase (PPO) plays a key role in tea processing, converting catechins into theaflavines. Two PPOs were isolated and purified from tea (Camellia sinensis) leaves. PPO1 and PPO2 exhibited molecular weights of 85 KDa and 42 KDa, respectively. PPO activities were evaluated at different temperatures and pH values to determine thermal stability as well as the optimal temperature and pH. Moreover, PPO1 and PPO2 were allowed to react with catechol, epigallocatechin (EGC), epigallocatechin gallate (EGCG), L-tyrosine, guaiacol, and pyrogallic acid as enzyme substrates. PPO isozymes were more active with the triphenolic substrate, and PPO2 demonstrated no activity toward guaiacol. PPO1 activity only resulted in the synthesis of simple theaflavin (IF), while PPO2 was able to synthesize four types of theaflavins, particularly theaflavin-3-3'-gallate (TFDG). These data provide insights into the optimum manufacturing conditions for the enzymatic synthesis of theaflavins. (C) 2017 Elsevier Ltd. All rights reserved.
机译:多酚氧化酶(PPO)在茶处加工中发挥关键作用,将儿茶素转化为植物紫杉醇。分离出两种PPO,并从茶叶中纯化(山茶花)叶子。 PPO1和PPO 2分别显示出85kDa和42kDa的分子量。在不同的温度和pH值下评估PPO活性以确定热稳定性以及最佳温度和pH值。此外,使PPO1和PPO 2与儿茶酚,EPIGALLOCATECHIN(EGC),EPIGALLOCATECHIN GALLET(EGCG),L-酪氨酸,胍和吡中酸作为酶底物反应。 PPO同工酶与三角酚底物更活跃,PPO2对愈菌醇展示了无活性。 PPO1活性只导致简单的Theaflawin(IF)的合成,而PPO2能够合成四种类型的Theaflavins,特别是TFDGIN-3-3'-gallate(TFDG)。这些数据在酶促合成的酶活性的最佳制造条件下提供了见解。 (c)2017 Elsevier Ltd.保留所有权利。

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