gamma-Glutamyl-peptides are frequently endowed with biological activities. In this work, "kokumi peptides " such as gamma- glutamyl-methionine (1) and gamma-glutamyl-(S)-allyl-cysteine (2), as well as the neuroprotective gamma-glutamyl-taurine (3) and the antioxidant ophthalmic acid (4), were synthesized through an enzymatic transpeptidation reaction catalyzed by the gamma-glutamyl transferase from Bacillus subtilis (BsGGT) using glutamine as the gamma-glutamyl donor. BsGGT was covalently immobilized on glyoxylagarose resulting in high protein immobilization yield and activity recovery (> 95%). Compounds 1-4 were obtained in moderate yields (19-40%, 5-10 g/L) with a variable purity depending on the presence of the main byproduct (gamma-glutamyl-glutamine, 0-16%). To achieve process intensification and better control of side reactions, the synthesis of 2 was moved from batch to continuous flow. The specific productivity was 1.5 times higher than that in batch synthesis (13.7 mu mol/min*g), but it was not accompanied by a paralleled improvement of the impurity profile.

From Batch to Continuous Flow Bioprocessing: Use of an Immobilized γ-Glutamyl Transferase from B. subtilis for the Synthesis of Biologically Active Peptide Derivatives

Robescu, Marina S
Investigation
;
Calvio, Cinzia
Resources
;
Ubiali, Daniela;Bavaro, Teodora
Writing – Review & Editing
2022-01-01

Abstract

gamma-Glutamyl-peptides are frequently endowed with biological activities. In this work, "kokumi peptides " such as gamma- glutamyl-methionine (1) and gamma-glutamyl-(S)-allyl-cysteine (2), as well as the neuroprotective gamma-glutamyl-taurine (3) and the antioxidant ophthalmic acid (4), were synthesized through an enzymatic transpeptidation reaction catalyzed by the gamma-glutamyl transferase from Bacillus subtilis (BsGGT) using glutamine as the gamma-glutamyl donor. BsGGT was covalently immobilized on glyoxylagarose resulting in high protein immobilization yield and activity recovery (> 95%). Compounds 1-4 were obtained in moderate yields (19-40%, 5-10 g/L) with a variable purity depending on the presence of the main byproduct (gamma-glutamyl-glutamine, 0-16%). To achieve process intensification and better control of side reactions, the synthesis of 2 was moved from batch to continuous flow. The specific productivity was 1.5 times higher than that in batch synthesis (13.7 mu mol/min*g), but it was not accompanied by a paralleled improvement of the impurity profile.
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.
Esperti anonimi
Inglese
Internazionale
ELETTRONICO
70
42
13692
13699
8
Bacillus subtilis; enzyme immobilization; flow chemistry; kokumi peptides; γ-glutamyl transferase; Glutamine; Sepharose; Cysteine; Antioxidants; Peptides; Taurine; gamma-Glutamyltransferase; Bacillus subtilis
https://pubs.acs.org/doi/10.1021/acs.jafc.2c03702
10
info:eu-repo/semantics/article
262
Robescu, Marina S; Annunziata, Francesca; Somma, Valeria; Calvio, Cinzia; Morelli, Carlo F; Speranza, Giovanna; Tamborini, Lucia; Ubiali, Daniela; Pin...espandi
1 Contributo su Rivista::1.1 Articolo in rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11571/1465064
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