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首页> 外文期刊>International Journal of Molecular Sciences >Characterization of Catalase from Psychrotolerant Psychrobacter piscatorii T-3 Exhibiting High Catalase Activity
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Characterization of Catalase from Psychrotolerant Psychrobacter piscatorii T-3 Exhibiting High Catalase Activity

机译:表现出高过氧化氢酶活性的抗精神病性幽门螺杆菌T-3过氧化氢酶的表征

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A psychrotolerant bacterium, strain T-3 (identified as Psychrobacter piscatorii), that exhibited an extraordinarily high catalase activity was isolated from the drain pool of a plant that uses H2O2 as a bleaching agent. Its cell extract exhibited a catalase activity (19,700 U·mg protein−1) that was higher than that of Micrococcus luteus used for industrial catalase production. Catalase was approximately 10% of the total proteins in the cell extract of the strain. The catalase (PktA) was purified homogeneously by only two purification steps, anion exchange and hydrophobic chromatographies. The purified catalase exhibited higher catalytic efficiency and higher sensitivity of activity at high temperatures than M. luteus catalase. The deduced amino acid sequence showed the highest homology with catalase of Psycrobacter cryohalolentis, a psychrotolelant bacterium obtained from Siberian permafrost. These findings suggest that the characteristics of the PktA molecule reflected the taxonomic relationship of the isolate as well as the environmental conditions (low temperatures and high concentrations of H2O2) under which the bacterium survives. Strain T-3 efficiently produces a catalase (PktA) at a higher rate than Exiguobacterium oxidotolerans, which produces a very strong activity of catalase (EktA) at a moderate rate, in order to adapt to high concentration of H2O2.
机译:从使用H 2 O 2 的植物的排水池中分离出表现出异常高的过氧化氢酶活性的抗精神病菌T-3株(鉴定为Psychrobacter piscatorii)。 >作为漂白剂。其细胞提取物表现出过氧化氢酶活性(19,700 U·mg蛋白 -1 ),高于工业化过氧化氢酶生产用的黄腐微球菌。过氧化氢酶约占菌株细胞提取物中总蛋白质的10%。过氧化氢酶(PktA)仅通过两个纯化步骤(阴离子交换和疏水色谱)进行均质纯化。纯化的过氧化氢酶比黄腐木霉过氧化氢酶表现出更高的催化效率和高温下的活性敏感性。推导的氨基酸序列与低温卤杆菌假单胞菌的过氧化氢酶具有最高的同源性。这些发现表明PktA分子的特征反映了分离株的分类关系以及环境条件(低温和高浓度的H 2 O 2 )细菌能够存活下来。 T-3菌株能以比氧化双歧杆菌更高的速率高效产生过氧化氢酶(PktA),为了适应高浓度的H 2,它以中等速率产生非常强的过氧化氢酶(EktA)活性。 sub> O 2

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