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PDBsum entry 4wl2
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PDB id:
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Hydrolase
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Title:
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Structure of penicillin v acylase from pectobacterium atrosepticum
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Structure:
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Putative exported choloylglycine hydrolase. Chain: a, b, c, d, e, f, g, h. Fragment: unp residues 30-376. Synonym: papva. Engineered: yes
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Source:
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Pectobacterium atrosepticum scri1043. Organism_taxid: 218491. Gene: eca3205. Expressed in: escherichia coli. Expression_system_taxid: 562.
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Resolution:
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2.50Å
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R-factor:
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0.220
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R-free:
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0.248
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Authors:
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S.Ramasamy,V.S.Avinash,A.V.Pundle,C.G.Suresh
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Key ref:
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V.S.Avinash
et al.
(2016).
Structural analysis of a penicillin V acylase from Pectobacterium atrosepticum confirms the importance of two Trp residues for activity and specificity.
J Struct Biol,
193,
85-94.
PubMed id:
DOI:
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Date:
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06-Oct-14
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Release date:
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07-Oct-15
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PROCHECK
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Headers
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References
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Q6D291
(Q6D291_PECAS) -
Penicillin V acylase from Pectobacterium atrosepticum (strain SCRI 1043 / ATCC BAA-672)
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Seq: Struc:
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376 a.a.
347 a.a.
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Key: |
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PfamA domain |
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Secondary structure |
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CATH domain |
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DOI no:
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J Struct Biol
193:85-94
(2016)
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PubMed id:
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Structural analysis of a penicillin V acylase from Pectobacterium atrosepticum confirms the importance of two Trp residues for activity and specificity.
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V.S.Avinash,
P.Panigrahi,
D.Chand,
A.Pundle,
C.G.Suresh,
S.Ramasamy.
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ABSTRACT
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Penicillin V acylases (PVA) catalyze the deacylation of the beta-lactam
antibiotic phenoxymethylpenicillin (Pen V). They are members of the Ntn
hydrolase family and possess an N-terminal cysteine as the main catalytic
nucleophile residue. They form the evolutionarily related cholylglycine
hydrolase (CGH) group which includes bile salt hydrolases (BSH) responsible for
bile deconjugation. Even though a few PVA and BSH structures have been reported,
no structure of a functional PVA from Gram-negative bacteria is available. Here,
we report the crystal structure of a highly active PVA from Gram-negative
Pectobacterium atrosepticum (PaPVA) at 2.5Å resolution. Structural comparison
with PVAs from Gram-positive bacteria revealed that PaPVA had a distinctive
tetrameric structure and active site organization. In addition, mutagenesis of
key active site residues and biochemical characterization of the resultant
variants elucidated the role of these residues in substrate binding and
catalysis. The importance of residue Trp23 and Trp87 side chains in binding and
correct positioning of Pen V by PVAs was confirmed using mutagenesis and
substrate docking with a 15ns molecular dynamics simulation. These results
establish the unique nature of Gram-negative CGHs and necessitate further
research about their substrate spectrum.
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}
}
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