γ-Glutamyltransferases (GGTs) from different sources have been proposed in recent times as biocatalysts for the enzymatic synthesis of naturally occurring γ-glutamyl derivatives with flavor-enhancer properties and interesting biological activities. Although the enzymatic approach is considered as a viable alternative to both the troublesome and low-yielding extraction from natural sources and synthesis through peptide chemistry requiring protection/deprotection steps, yields are not completely satisfactory, due to the intervention of GGT-catalysed hydrolysis and autotranspeptidation side-reactions. Here, the design and the use as biocatalyst for preparative purposes of two mutants of E. coli GGT are described. The design of mutants was pursued by docking-guided identification of residues putatively involved in interaction with the acceptor substrate, thus probably representing a first identification of residues constituting the still elusive and poorly characterized acceptor substrate binding site of the enzyme.

Enzymatic Synthesis of γ‐Glutamyl Dipeptides Catalysed by Mutant E. coli γ‐Glutamyltransferases

Rabuffetti, Marco
Investigation
;
Calvio, Cinzia
Investigation
;
2022-01-01

Abstract

γ-Glutamyltransferases (GGTs) from different sources have been proposed in recent times as biocatalysts for the enzymatic synthesis of naturally occurring γ-glutamyl derivatives with flavor-enhancer properties and interesting biological activities. Although the enzymatic approach is considered as a viable alternative to both the troublesome and low-yielding extraction from natural sources and synthesis through peptide chemistry requiring protection/deprotection steps, yields are not completely satisfactory, due to the intervention of GGT-catalysed hydrolysis and autotranspeptidation side-reactions. Here, the design and the use as biocatalyst for preparative purposes of two mutants of E. coli GGT are described. The design of mutants was pursued by docking-guided identification of residues putatively involved in interaction with the acceptor substrate, thus probably representing a first identification of residues constituting the still elusive and poorly characterized acceptor substrate binding site of the enzyme.
2022
Biochemistry & Biophysics
Microbiology covers the biology and biochemistry of microorganisms, bacterial, viral, and parasitic, as well as the medical implications and treatments of the subset of these organisms known to cause disease in humans and/or animals. Biotechnology applications of microorganisms for basic science or clinical use are also covered. Resources that emphasize immune response to pathogens and its modulation by clinical intervention are excluded and are covered in the Immunology category.
Molecular Biology & Genetics
Esperti anonimi
Inglese
Internazionale
ELETTRONICO
Biocatalysis, Site-specific Mutagenesis, Amino acids, gamma-glutamyltransferases, taste-active compounds
https://doi.org/10.1002/ejoc.202200907
no
4
info:eu-repo/semantics/article
262
Rabuffetti, Marco; Speranza, Giovanna; Calvio, Cinzia; Morelli, Carlo F.
1 Contributo su Rivista::1.1 Articolo in rivista
none
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11571/1465084
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