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Structural and enzymatic properties of 1-aminocyclopropane-1-carboxylate deaminase homologue from Pyrococcus horikoshii

机译:贺氏热球菌的1-氨基环丙烷-1-羧酸脱氨酶同源物的结构和酶学性质

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1-Aminocyclopropane-1-carboxylate deaminase (ACCD) is a pyridoxal 5'-phosphate dependent enzyme that shows deaminase activity toward ACC, a precursor of plant hormone ethylene. ACCD from some soil bacteria has been reported to be able to break the cyclopropane ring of ACC to yield alpha-ketobutyrate and ammonia. We reported the crystal structure of ACCD from the yeast Hansenula saturnus in the absence/presence of substrate ACC, and proposed its ingenious reaction mechanisms. In order to study the enzyme further, we overexpressed the ACCD homologue protein (phAHP) from the fully decoded hyperthermophilic archearon, Pyrococcus horikoshii OT3. However, phAHP does not show ACCD activity at high temperature as well as at room temperature, though it has significant sequence similarity. Instead of ACCD activity the GC-MS analysis and enzymatic method show that phAHP has deaminase activity toward L and D-serine. Here, we present the crystal structures of the native and ACC-complexed phAHP. The overall topology of the phAHP structure is very similar to that of ACCD; however, critical differences were observed around the active site. Here, the differences of enzymatic activity between phAHP and ACCD are discussed based on the structural differences of these two proteins. We suggest that the catalytic disagreement between these two enzymes comes from the difference of the residues near the pyridine ring of pyridoxal 5'-phosphate (PLP), not the difference of the catalytic residues themselves. We also propose a condition necessary in the primary sequence to have ACCD activity. (C) 2004 Elsevier Ltd. All rights reserved.
机译:1-氨基环丙烷-1-羧酸脱氨酶(ACCD)是一种吡咯醛5'-磷酸依赖性酶,对植物激素乙烯的前体ACC具有脱氨酶活性。据报道,来自某些土壤细菌的ACCD能够破坏ACC的环丙烷环,生成α-酮丁酸和氨。我们报道了在没有/存在底物ACC的情况下,来自酵母汉逊酵母的ACCD的晶体结构,并提出了其巧妙的反应机理。为了进一步研究该酶,我们从完全解码的超嗜热古菌(Pyrococcus horikoshii OT3)中过表达了ACCD同源蛋白(phAHP)。但是,尽管phAHP具有明显的序列相似性,但它在高温和室温下均未显示ACCD活性。 GC-MS分析和酶方法代替ACCD活性,表明phAHP对L和D-丝氨酸具有脱氨酶活性。在这里,我们介绍了天然和ACC复杂phAHP的晶体结构。 phAHP结构的总体拓扑与ACCD非常相似。但是,在活动站点周围观察到严重差异。在此,基于这两种蛋白质的结构差异,讨论了phAHP和ACCD之间酶活性的差异。我们建议这两种酶之间的催化分歧来自吡ido醛5'-磷酸(PLP)吡啶环附近残基的差异,而不是催化残基本身的差异。我们还提出了一级序列具有ACCD活性的必要条件。 (C)2004 Elsevier Ltd.保留所有权利。

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