Identification and Characterization of Novel Thermostable Alpha-Amylase From Geobacillus Sp. Gs33

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Abstract

In this study, the heterologous expression and biochemical characterization of a thermostable alpha-amylase from Geobacillus sp. GS33 was investigated. The recombinant alpha-amylase was overexpressed in Escherichia coli BL21 (lambda DE) and purified via anion exchange and size-exclusion chromatography. The purified alpha-amylase had a molecular weight of about 60 kDa, and was active in a broad range of pH 3-10 and temperature (40-90 degrees C) withmaximumactivity at pH 7-8 and 60 degrees C. The enzyme retained 50% residual activity at 65 degrees C, but only 20% at 85 degrees C after 16 h. At pH 9 and pH 7, the residual activity at 65 degrees C was 50% and 30%, respectively. The enzymewas remarkably activated by Co2+, Ca2+, Mg2+, PMSF, DTT, and Triton X-100, but partially inhibited by Cu2+, methanol, hexane, ethanol, acetone, SDS, and Tween 20. A molecular phylogeny analysis showed that the enzyme's amino acid sequence had the closest connection with an alpha-amylase from Geobacillus thermoleovorans subsp. stromboliensis nov. 3D-structure-based amino acid sequence alignments revealed that the three catalytic residues (D217, E246, D314) and the four Ca2+ ion coordination residues (N143, E177, D186, H221) were conserved in alpha-amylase from Geobacillus sp. GS33. The temperature stability and neutral pH optimum suggest that the enzyme may be useful for industrial applications. (C) 2020 Elsevier B.V. All rights reserved.

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Keywords

Alpha-Amylase, Geobacillus sp., Thermostability, anion exchange chromatography, molecular cloning, Models, Molecular, magnesium ion, Hot Temperature, Protein Conformation, acetone, phylogeny, benzylsulfonyl fluoride, bacterial protein, Enzyme Stability, calcium ion, genetics, triton x 100, Cloning, Molecular, enzyme inhibition, Phylogeny, alcohol, pH, size exclusion chromatography, ion exchange chromatography, Hydrogen-Ion Concentration, Chromatography, Ion Exchange, cobalt, enzyme activity, enzyme structure, hexane, copper ion, sequence alignment, Chromatography, Gel, enzyme active site, Thermodynamics, amylase, enzymology, Geobacillus thermoleovorans, chemistry, ?-Amylase, Article, Evolution, Molecular, thermodynamics, Bacterial Proteins, protein conformation, controlled study, procedures, Amino Acid Sequence, enzyme stability, molecular phylogeny, methanol, nonhuman, molecular evolution, dithiothreitol, temperature, Geobacillus, molecular weight, nucleotide sequence, enzyme activation, thermostability, amino acid sequence, dodecyl sulfate sodium, Molecular Weight, polysorbate 20, Thermostability, heat, molecular model, alpha-Amylases, metabolism

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0301 basic medicine, 0303 health sciences, 03 medical and health sciences

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33

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164

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578

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585
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PubMed : 6

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