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1.
Chemosphere ; 143: 128-34, 2016 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-26206748

RESUMO

Carbonic anhydrase (CA) is a biocatalyst for CO2 sequestration because of its distinctive ability to accelerate CO2 hydration. High production and efficient immobilization of alkaline-active CAs are required, because one potential application of CA is its use in the alkaline solvent-based CO2 absorption/desorption process. Here, we designed and applied an α-type CA from Hahella chejuensis (HCA), which was reported as highly active in alkaline conditions, but was mostly expressed as insoluble forms. We found that the signal peptide-removed form of HCA [HCA(SP-)] was successfully expressed in the soluble form [∼70mg of purified HCA(SP-) per L of culture]. HCA(SP-) also displayed high pH stability in alkaline conditions, with maximal activity at pH 10; at this pH, ∼90% activity was maintained for 2h. Then, we prepared HCA(SP-)-encapsulated silica particles [HCA(SP-)@silica] via a spermine-mediated bio-inspired silicification method. HCA(SP-)@silica exhibited high-loading and highly stable CA activity. In addition, HCA(SP-)@silica retained more than 90% of the CA activity even after 10 cycles of use in mild conditions, and ∼80% in pH 10 conditions. These results will be useful for the development of practical CO2 sequestration processes employing CA.


Assuntos
Dióxido de Carbono/química , Anidrases Carbônicas/química , Gammaproteobacteria/enzimologia , Dióxido de Silício/química , Escherichia coli , Esterases/química , Concentração de Íons de Hidrogênio , Microscopia Eletrônica de Varredura , Solubilidade , Solventes , Espermina/química , Temperatura
2.
Bioprocess Biosyst Eng ; 36(3): 375-81, 2013 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-22833227

RESUMO

The high production of functional carbonic anhydrase (CA) is required for practical CO2 sequestration application mediated by CA. Here, the synthetic gene based on Escherichia coli codon usage of new α-type CA (HC-aCA) of Hahella chejuensis, a Korea marine microorganism, was highly expressed in E. coli. We obtained a high yield of functional HC-aCA by denaturing/refolding process and incorporating zinc ion into its active site. The refolded HC-aCA displayed a half-deactivation temperature of 60 °C with maximal activity at 50 °C, and had high pH stability in alkali condition with maximal activity at pH 10.0. The esterase activity of HC-aCA almost doubled at high salt concentration ranging from 0.67 to 2.0 M NaCl. HC-aCA catalyzed the conversion of CO2 to CaCO3 as calcites form in the presence of Ca(2+). The refolded HC-aCA could be a promising candidate for the development of efficient CA-based CO2 sequestration processes.


Assuntos
Dióxido de Carbono/química , Anidrases Carbônicas/química , Gammaproteobacteria/enzimologia , Anidrases Carbônicas/biossíntese , Catálise , Domínio Catalítico , Códon , Escherichia coli/metabolismo , Esterases/química , Concentração de Íons de Hidrogênio , Íons/química , Metais/química , Dobramento de Proteína , Proteínas Recombinantes/química , Temperatura , Zinco/química
3.
Appl Biochem Biotechnol ; 167(8): 2341-56, 2012 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-22715026

RESUMO

Carbonic anhydrases (CAs) have been given much attention as biocatalysts for CO(2) sequestration process because of their ability to convert CO(2) to bicarbonate. Here, we expressed codon-optimized sequence of α-type CA cloned from Dunaliella species (Dsp-aCAopt) and characterized its catalyzing properties to apply for CO(2) to calcite formation. The expressed amount of Dsp-aCAopt in Escherichia coli is about 50 mg/L via induction of 1.0 mM isopropyl-ß-D-thiogalactopyranoside at 20 °C (for the case of intact Dsp-aCA, negligible). Dsp-aCAopt enzyme shows 47 °C of half-denaturation temperature and show wide pH stability (optimum pH 7.6/10.0). Apparent values of K (m) and V (max) for p-nitrophenylacetate substrate are 0.91 mM and 3.303 × 10(-5) µM min(-1). The effects of metal ions and anions were investigated to find out which factors enhance or inhibit Dsp-aCAopt activity. Finally, we demonstrated that Dsp-aCAopt enzyme can catalyze well the conversion of CO(2) to CaCO(3), as the calcite form, in the Ca(2+) solution [8.9 mg/100 µg (172 U/mg enzyme) with 10 mM of Ca(2+)]. The obtained expression and characterization results of Dsp-aCAopt would be usefully employed for the development of efficient CA-based system for CO(2)-converting/capturing processes.


Assuntos
Dióxido de Carbono/metabolismo , Anidrases Carbônicas/química , Anidrases Carbônicas/genética , Clorófitas/enzimologia , Códon , Expressão Gênica , Sequência de Aminoácidos , Sequência de Bases , Anidrases Carbônicas/isolamento & purificação , Anidrases Carbônicas/metabolismo , Clorófitas/genética , Estabilidade Enzimática , Escherichia coli/genética , Escherichia coli/metabolismo , Cinética , Dados de Sequência Molecular , Engenharia de Proteínas
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