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Cloning, expression and characterization of a thermostable esterase HydS14 from actinomadura sp. strain S14 in pichia pastoris

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dc.contributor.author Sriyapai P.
dc.contributor.author Kawai F.
dc.contributor.author Siripoke S.
dc.contributor.author Chansiri K.
dc.contributor.author Sriyapai T.
dc.date.accessioned 2021-04-05T03:25:45Z
dc.date.available 2021-04-05T03:25:45Z
dc.date.issued 2015
dc.identifier.issn 16616596
dc.identifier.other 2-s2.0-84935005175
dc.identifier.uri https://ir.swu.ac.th/jspui/handle/123456789/13690
dc.identifier.uri https://www.scopus.com/inward/record.uri?eid=2-s2.0-84935005175&doi=10.3390%2fijms160613579&partnerID=40&md5=8abec01798b9901b5349e2d3b5a735da
dc.description.abstract A thermostable esterase gene (hydS14) was cloned from an Actinomadura sp. S14 gene library. The gene is 777 bp in length and encodes a polypeptide of 258 amino acid residues with no signal peptide, no N-glycosylation site and a predicted molecular mass of 26,604 Da. The encoded protein contains the pentapeptide motif (GYSLG) and catalytic triad (Ser88-Asp208-His235) of the esterase/lipase superfamily. The HydS14 sequence shows 46%–64% identity to 23 sequences from actinomycetes (23 α/β-hydrolases), has three conserved regions, and contains the novel motif (GY(F)SLG), which distinguishes it from other clusters in the α/β-hydrolase structural superfamily. A plasmid containing the coding region (pPICZαA-hydS14) was used to express HydS14 in Pichia pastoris under the control of the AOXI promoter. The recombinant HydS14 collected from the supernatant had a molecular mass of ~30 kDa, which agrees with its predicted molecular mass without N-glycosylation. HydS14 had an optimum temperature of approximately 70 °C and an optimum pH of 8.0. HydS14 was stable at 50 and 60 °C for 120 min, with residual activities of above 80% and above 90%, respectively, as well as 50% activity at pH 6.0–8.0 and pH 9.0, respectively. The enzyme showed higher activity with p-nitrophenyl-C2 and C4. The Km and Vmax values for p-nitrophenyl-C4 were 0.21 ± 0.02 mM and 37.07 ± 1.04 μmol/min/mg, respectively. The enzyme was active toward short-chain p-nitrophenyl ester (C2–C6), displaying optimal activity with p-nitrophenyl-C4 (Kcat/Km = 11.74 mM−1·S−1). In summary, HydS14 is a thermostable esterase from Actinomadura sp. S14 that has been cloned and expressed for the first time in Pichia pastoris. © 2015 by the authors; licensee MDPI, Basel, Switzerland.
dc.subject Actinomadura
dc.subject amino acid substitution
dc.subject Article
dc.subject controlled study
dc.subject enzyme activity
dc.subject enzyme specificity
dc.subject gene
dc.subject gene cluster
dc.subject gene expression
dc.subject genetic conservation
dc.subject genetic trait
dc.subject hydS14 gene
dc.subject Komagataella pastoris
dc.subject molecular cloning
dc.subject nonhuman
dc.subject phylogeny
dc.subject polyacrylamide gel electrophoresis
dc.subject protein motif
dc.subject sequence alignment
dc.subject zymography
dc.subject Actinobacteria
dc.subject amino acid sequence
dc.subject chemistry
dc.subject enzyme stability
dc.subject enzymology
dc.subject genetics
dc.subject heat
dc.subject metabolism
dc.subject molecular cloning
dc.subject molecular genetics
dc.subject nucleotide sequence
dc.subject Pichia
dc.subject protein denaturation
dc.subject Actinobacteria (class)
dc.subject Actinomadura
dc.subject Actinomadura sp.
dc.subject Pichia pastoris
dc.subject bacterial protein
dc.subject esterase
dc.subject Actinobacteria
dc.subject Amino Acid Sequence
dc.subject Bacterial Proteins
dc.subject Base Sequence
dc.subject Cloning, Molecular
dc.subject Enzyme Stability
dc.subject Esterases
dc.subject Hot Temperature
dc.subject Molecular Sequence Data
dc.subject Pichia
dc.subject Protein Denaturation
dc.subject Substrate Specificity
dc.title Cloning, expression and characterization of a thermostable esterase HydS14 from actinomadura sp. strain S14 in pichia pastoris
dc.type Article
dc.rights.holder Scopus
dc.identifier.bibliograpycitation International Journal of Molecular Sciences. Vol 16, No.6 (2015), p.13579-13594
dc.identifier.doi 10.3390/ijms160613579


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