首页> 外文期刊>Journal of bacteriology >Carbonic Anhydrase Is Essential for Growth of Ralstonia eutropha at Ambient CO2 Concentrations
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Carbonic Anhydrase Is Essential for Growth of Ralstonia eutropha at Ambient CO2 Concentrations

机译:碳酸酐酶在环境CO2浓度下对富营养的Ralstonia eutropha至关重要

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Mutant strain 25-1 of the facultative chemoautotroph Ralstonia eutropha H16 had previously been shown to exhibit an obligately high-CO2-requiring (HCR) phenotype. Although the requirement varied with the carbon and energy sources utilized, none of these conditions allowed growth at the air concentration of CO2. In the present study, a gene designated can and encoding a β-carbonic anhydrase (CA) was identified as the site altered in strain 25-1. The mutation caused a replacement of the highly conserved glycine residue 98 by aspartate in Can. A can deletion introduced into wild-type strain H16 generated mutant HB1, which showed the same HCR phenotype as mutant 25-1. Overexpression of can in Escherichia coli and mass spectrometric determination of CA activity demonstrated that can encodes a functional CA. The enzyme is inhibited by ethoxyzolamide and requires 40 mM MgSO4 for maximal activity. Low but significant CA activities were detected in wild-type H16 but not in mutant HB1, strongly suggesting that the CA activity of Can is essential for growth of the wild type in the presence of low CO2 concentrations. The HCR phenotype of HB1 was overcome by complementation with heterologous CA genes, indicating that growth of the organism at low CO2 concentrations requires sufficient CA activity rather than the specific function of Can. The metabolic function(s) depending on CA activity remains to be identified.
机译:兼性化学自养植物富营养小球藻Remstonia eutropha H16的突变株25-1先前已显示出具有专一性的高CO 2 需要(HCR)表型。尽管需求随所使用的碳和能源的不同而变化,但这些条件均不能使空气中CO 2 的浓度增加。在本研究中,鉴定为名为 can 的基因并编码β-碳酸酐酶(CA),它是菌株25-1中改变的位点。该突变导致Can中的天冬氨酸替代了高度保守的甘氨酸残基98。将 can 缺失导入野生型H16菌株可产生突变体HB1,其表现出与突变体25-1相同的HCR表型。大肠杆菌中 can 的过度表达和CA活性的质谱测定表明, can 编码功能性CA。该酶被乙氧基唑酰胺抑制,需要40 mM MgSO 4 才能发挥最大活性。在野生型H16中检测到较低但显着的CA活性,而在突变型HB1中未检测到,这强烈表明Can的CA活性对于在低CO 2 浓度下野生型的生长至关重要。 HB1的HCR表型通过与异源CA基因互补而克服,这表明在低CO 2 浓度下生物的生长需要足够的CA活性,而不是Can的特定功能。取决于CA活性的新陈代谢功能仍有待确定。

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