首页> 外文期刊>Indian Journal of Microbiology >Relationship Between Main Channel Structure of Catalases and the Evolutionary Direction in Cold-Adapted Hydrogen Peroxide-Tolerant Exiguobacteium and Psychrobacter
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Relationship Between Main Channel Structure of Catalases and the Evolutionary Direction in Cold-Adapted Hydrogen Peroxide-Tolerant Exiguobacteium and Psychrobacter

机译:透明酶的主通道结构与冷适应氢过氧化氢的进化方向之间的关系

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摘要

Catalase has crucial role in adaptive response to H2O2. Main channel structure responsible for substrate selectivity was estimated to understand the relationship between the evolutionary direction of catalases from Exiguobacterium oxidotolerans and Psychrobacter piscatorii which survive in cold and high concentration of hydrogen peroxide, and their catalytic property. E. oxidotolerans catalase (EKTA) exhibited a higher ratio of compound I formation rate using peracetic acid (a substrate lager than H2O2)/catalase activity using H2O2 as the substrate than P. piscatori catalase (PKTA). It was considered that the ratio was attributed to the size of the amino acid residues locating at the bottle neck structure in the main channel. The differences in the ratio of the compound I formation rate with peracetic acid to catalase activity with H2O2 between the deeper branches in the phylogenetic tree in both EKTA and PKTA were large. This indicates that catalases from the hydrogen peroxide-tolerant bacteria have evolved in different directions, exhibiting effective catalytic activity and allowing broader substrates size or H2O2-specific substrate acceptability in EKTA and PKTA, respectively. It is considered that the main channel structure reflected the difference in the evolutionary direction of clade 1 and clade 3 catalases.
机译:过氧化氢酶对H2O2的适应性反应具有至关重要的作用。估计负责基板选择性的主沟道结构是为了了解来自氧化碳钾的异化酶的进化方向与活性癌症的心理杆菌菌和催化性能。 E. Oxidotolerans过氧化氢酶(EKTA)使用H 2 O 2作为基质的过乙酸(基质纸浆比H 2 O 2)/过氧化氢酶活性的化合物I形成速率与比P. piscatori过氧化氢酶(PKTA)相比,化合物I形成速率较高。被认为是该比率归因于主通道中的瓶颈结构上定位的氨基酸残基的大小。化合物I形成速率与eKTA和PKTA中系统发育树中的较深分支之间的过缩酸酶活性与过缩碱活性的差异大。这表明来自过氧化氢耐氢细菌的过失在不同方向上进化,表现出有效的催化活性,并分别在EKTA和PKTA中允许更广泛的基质尺寸或H2O2特异性底物可接受性。认为主沟道结构反射了疏水层1和疏水蛋白的进化方向的差异。

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