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首页> 外文期刊>Bioresources and Bioprocessing >Identification of a new thermostable and alkali-tolerant α-carbonic anhydrase from Lactobacillus delbrueckii as a biocatalyst for CO_2 biomineralization
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Identification of a new thermostable and alkali-tolerant α-carbonic anhydrase from Lactobacillus delbrueckii as a biocatalyst for CO_2 biomineralization

机译:从德氏乳杆菌中鉴定出一种新的耐高温耐碱α-碳酸酐酶作为CO_2生物矿化的生物催化剂

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Background: Carbonic anhydrase (CA, EC 4.2.1.1), an ancient enzyme and the fastest among many enzymes, is a useful biocatalyst for carbon capture use and storage (CCUS). The use of alkaline buffers and high temperatures are favorable for biomineralization. Hence, the stability of CA under such harsh conditions is extremely important for its practical application. Methods and results: Herein, we report a new thermostable and alkaline-tolerant α-CA (designated as LdCA), with only 26 % identity to bovine CA (BCA), which was identified by genome mining from Lactobacillus delbrueckii CGMCC 8137. It was overexpressed in Escherichia coli in a soluble form and purified to electrophoretic homogeneity by His-Trap affinity chromatography. The dimer protein had a subunit molecular weight of 23.8 kDa and showed extremely high stability at pH 6.0-11.0 and 30-60℃. Its activity was maintained even after incubation at 90℃ for 15 min. The half-lives of the enzyme measured at 30, 40, and 50℃ were 630, 370, and 177 h, respectively. At pH 9.0, 10.0, and 11.0, its half-lives were 105, 65, and 41 min, respectively. LdCA was applied at 50℃ to accelerate the formation of calcium carbonate in a vaterite phase. Conclusions: In summary, a new CA with high thermal and alkaline stability was identified from a general bacterium, demonstrating an effective strategy for discovering new and useful biocatalysts.
机译:背景:碳酸酐酶(CA,EC 4.2.1.1)是一种古老的酶,在许多酶中是最快的,是一种有用的生物催化剂,可用于碳捕获和利用(CCUS)。使用碱性缓冲液和高温有利于生物矿化。因此,CA在这种恶劣条件下的稳定性对于其实际应用极为重要。方法和结果:在本文中,我们报道了一种新的热稳定且耐碱的α-CA(称为LdCA),与牛CA(BCA)仅有26%的同一性,这是通过德氏乳杆菌CGMCC 8137的基因组挖掘鉴定的。在大肠杆菌中以可溶形式过度表达,并通过His-Trap亲和层析纯化至电泳均一。二聚体蛋白的亚基分子量为23.8 kDa,在pH 6.0-11.0和30-60℃时显示出极高的稳定性。即使在90℃孵育15分钟后仍能保持其活性。在30、40和50℃下测得的酶的半衰期分别为630、370和177小时。在pH 9.0、10.0和11.0时,其半衰期分别为105、65和41分钟。在50℃下应用LdCA以加速球v石相中碳酸钙的形成。结论:总而言之,从普通细菌中鉴定出了一种具有高热稳定性和碱稳定性的新型CA,证明了发现新的有用生物催化剂的有效策略。

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