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Bacterial iota-carbonic anhydrase: a new active class of carbonic anhydrase identified in the genome of the Gram-negative bacterium Burkholderia territorii

机译:细菌IOTA - 碳酸酐酶:革兰氏阴性菌Burkholderia Territorii基因组中鉴定的新活性类碳酸酐酶

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摘要

The carbonic anhydrases (CAs, EC 4.2.1.1) catalyse a simple but physiologically crucial reversible reaction, the carbon dioxide hydration with the production of bicarbonate and protons. In the last years, and especially, to the rapid emergence of the bacterial antibiotic resistance that is occurring worldwide, the understanding of the function of bacterial CAs has increased significantly. Recently, a new CA-class (iota-CA) was discovered in the marine diatom T. pseudonana. It has been reported that bacterial genomes may contain genes with relevant homology to the diatom iota-class CA. Still, the catalytic activity of the enzyme encoded by the gene was not investigated. Thus, herein, for the first time, we cloned, expressed, and purified the recombinant bacterial iota-CA (acronym BteCA iota) identified in the genome of Burkholderia territorii. The recombinant BteCA iota resulted in a good catalyst for the hydration of CO2 to bicarbonate and protons, with a k(cat) of 3.0 x 10(5) s (-1) and k(cat)/K-M of 3.9 x 10(7) M (-1) s (-1), and is also sensitive to inhibition by the sulphonamide acetazolamide. Furthermore, with the aid of the protonography, it has been demonstrated that BteCA iota can be present as a dimer. This result is corroborated by the construction of a molecular model of BteCA iota, which showed that the enzyme is formed by two equivalent monomers having a structure similar to a butterfly.
机译:碳酸酐酶(CAS,EC 4.2.1.1)催化了一种简单但生理上至关重要的可逆反应,具有碳酸氢盐和质子的二氧化碳水合。在过去几年中,特别是在全球发生的细菌抗生素抗性的快速出现,对细菌CA的功能的理解显着增加。最近,在海洋硅藻土中发现了一个新的CA-Class(IOTA-CA)。据报道,细菌基因组可以含有与硅藻IOTA类CA相关同源性的基因。仍然,未研究由基因编码的酶的催化活性。因此,在本文中,我们首次克隆,表达和纯化在Burkholderia Territorii的基因组中鉴定的重组细菌IOTA-Ca(缩略乳BTECA IOTA)。重组BTECA IOTA导致良好的CO 2水合催化剂,用于碳酸氢盐和质子,Ak(猫)为3.0×10(5)秒(-1)和K(猫)/ km,为3.9×10(7) M(-1)S(-1),并且对磺酰胺丙唑胺的抑制也敏感。此外,借助质子化学成像,已经证明BTECA IOTA可以作为二聚体存在。通过构建BTECA IOTA的分子模型的构建来证实该结果,表明酶由具有与蝶形类似的结构的两种等同的单体形成。

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