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首页> 外文期刊>Journal of molecular catalysis, B. Enzymatic >Characterization of recombinant thiamine diphosphate-dependent phosphonopyruvate decarboxylase from Streptomyces viridochromogenes Tu494
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Characterization of recombinant thiamine diphosphate-dependent phosphonopyruvate decarboxylase from Streptomyces viridochromogenes Tu494

机译:链霉菌色原体Tu494的重组硫胺素二磷酸依赖性磷酸丙酮丙酮酸脱羧酶的表征

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Phosphonopyruvate decarboxylase (PPDC) catalyzes the thiamine diphosphate-dependent non-oxidative decarboxylation of phosphonopyruvate to phosphonoacetaldehyde and carbon dioxide. The enzyme of S. viridochromogenes Tu494 was expressed as a recombinant fusion protein with an N-terminal 10× histidine-tag in Escherichia coli cells, and was purified to homogeneity by nickel affinity chromatography. The biochemical properties of the recombinant enzyme were characterized, measuring phosphonoacetaldehyde formation by two newly developed coupled enzyme assays. PPDC has a high affinity to its cofactors ThDP, and Mg~(2+) (both K_m~40μM). The metal ions Ca~(2+) and Mn~(2+) (K_m~3 μM) could substitute for Mg~(2+). In coupled enzyme assays at pH 8.0 (HEPES buffer) and at 30°C, PPDC followed Michaelis-Menten kinetics with phosphonopyruvate, with a K_m value of 3.2 ±0.35 μM and a v_(max) value of 0.81 ±0.01 U/mg. Neither pyruvate, β-hydroxypyruvate, nor fluoropyruvate served as alternative substrates. Gel filtration chromatography indicated a molecular mass of 72,100 ± 220 Da. Taking into account a subunit size of about 43,600 Da, the quaternary structure of the Ppd appears to be homodimeric.A comparison with the pyruvate decarboxylase (PDC) from Zymomonas mobilis allowed the identification of several amino acid residues, whose potential functions were examined by site-directed mutagenesis. Based on kinetic data of various site-directed PPDC variants and by comparison to 3D structures of PDC and benzoylformate decarboxylase, a model of the active site was generated. As in most other ThDP-dependent enzymes a glutamate residue (Glu-48 of PPDC) appears to be responsible for ThDP activation. Residues Ser-25, His-110, and Asp-297 affect the catalytic activity and are probably located in the direct vicinity of the substrate binding site. Residues Asp-265, Asn-293, and Gly-294 were found within the conserved ThDP-binding motif and mark the binding site of the Me~(2+) ion that is responsible for ThDP anchoring. Asp-263 is conserved in PPDC sequences and in sulfopyruvate decarboxylase, and appears to contribute to the metal ion binding site, too. Glu-224, another conserved residue is essential for catalytic activity. The results for Glu-224 and Asp-263 are contrary to the description of the corresponding residues in the PPDC of the gram-negative bacterium Bacteroides fragilis [G. Zhang, J. Dai, Z. Lu, D. Dunaway-Mariano, J. Biol. Chem. 278 (2003) 41302-41308].
机译:丙酮酸丙酮酸脱羧酶(PPDC)催化硫代磷酸丙酮酸的硫胺素二磷酸依赖性非氧化脱羧反应生成膦酰乙醛和二氧化碳。 S.viridochromogenes Tu494的酶在大肠杆菌细胞中表达为具有N端10x组氨酸标签的重组融合蛋白,并通过镍亲和色谱纯化至同质。表征重组酶的生化特性,通过两种新开发的偶联酶测定法测量膦酰乙醛的形成。 PPDC对它的辅因子ThDP和Mg〜(2+)(均为K_m〜40μM)具有高度亲和力。金属离子Ca〜(2+)和Mn〜(2+)(K_m〜3μM)可以代替Mg〜(2+)。在pH 8.0(HEPES缓冲液)和30°C的偶联酶分析中,PPDC遵循Michaelis-Menten动力学与膦酰基丙酮酸,K_m值为3.2±0.35μM,v_(max)值为0.81±0.01 U / mg。丙酮酸,β-羟基丙酮酸或氟丙酮酸都不用作替代底物。凝胶过滤色谱法表明分子量为72,100±220 Da。考虑到约43,600 Da的亚基大小,Ppd的四级结构似乎是同二聚体。与运动发酵单胞菌的丙酮酸脱羧酶(PDC)进行比较可以鉴定出几个氨基酸残基,可通过位点检查其潜在功能定向诱变。基于各种定点PPDC变体的动力学数据,并与PDC和苯甲酰甲酸酯脱羧酶的3D结构进行比较,生成了活性位点的模型。与大多数其他依赖ThDP的酶一样,谷氨酸残基(PPDC的Glu-48)似乎是ThDP激活的原因。残基Ser-25,His-110和Asp-297影响催化活性,可能位于底物结合位点的直接附近。在保守的ThDP结合基序中发现了残基Asp-265,Asn-293和Gly-294,并标记了负责ThDP锚定的Me〜(2+)离子的结合位点。 Asp-263在PPDC序列和磺丙酮酸脱羧酶中保守,并且似乎也对金属离子结合位点有贡献。 Glu-224,另一个保守的残基对于催化活性至关重要。 Glu-224和Asp-263的结果与革兰氏阴性菌脆弱拟杆菌(Bacteroides fragilis)的PPDC中相应残基的描述相反。 Zhang,J. Dai,Z. Lu,D.Dunaway-Mariano,J.Biol。化学278(2003)41302-41308]。

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