: Responsible use of natural resources and waste reduction are key concepts in bioeconomy. This study demonstrates that agro-food derived-biomasses from the Italian food industry, such as crude glycerol and cheese whey permeate (CWP), can be combined in a high-density fed-batch culture to produce a recombinant β-galactosidase from Marinomonas sp. ef1 (M-βGal). In a small-scale process (1.5 L) using 250 mL of crude glycerol and 300 mL of lactose-rich CWP, approximately 2000 kU of recombinant M-βGal were successfully produced along with 30 g of galactose accumulated in the culture medium. The purified M-βGal exhibited high hydrolysis efficiency in lactose-rich matrices, with hydrolysis yields of 82 % in skimmed milk at 4 °C and 94 % in CWP at 50 °C, highlighting its biotechnological potential. This approach demonstrates the effective use of crude glycerol and CWP in sustainable and cost-effective high-density Escherichia coli cultures, potentially applicable to recombinant production of various proteins.

Bianchi, G., Pessina, A., Ami, D., Signorelli, S., de Divitiis, M., Natalello, A., et al. (2024). Sustainable production of a biotechnologically relevant β-galactosidase in Escherichia coli cells using crude glycerol and cheese whey permeate. BIORESOURCE TECHNOLOGY, 406(August 2024) [10.1016/j.biortech.2024.131063].

Sustainable production of a biotechnologically relevant β-galactosidase in Escherichia coli cells using crude glycerol and cheese whey permeate

Bianchi, Greta
Co-primo
;
Pessina, Alex
Co-primo
;
Ami, Diletta;Signorelli, Samuele;de Divitiis, Marcella;Natalello, Antonino;Lotti, Marina;Brambilla, Luca;Brocca, Stefania
Penultimo
;
Mangiagalli, Marco
Ultimo
2024

Abstract

: Responsible use of natural resources and waste reduction are key concepts in bioeconomy. This study demonstrates that agro-food derived-biomasses from the Italian food industry, such as crude glycerol and cheese whey permeate (CWP), can be combined in a high-density fed-batch culture to produce a recombinant β-galactosidase from Marinomonas sp. ef1 (M-βGal). In a small-scale process (1.5 L) using 250 mL of crude glycerol and 300 mL of lactose-rich CWP, approximately 2000 kU of recombinant M-βGal were successfully produced along with 30 g of galactose accumulated in the culture medium. The purified M-βGal exhibited high hydrolysis efficiency in lactose-rich matrices, with hydrolysis yields of 82 % in skimmed milk at 4 °C and 94 % in CWP at 50 °C, highlighting its biotechnological potential. This approach demonstrates the effective use of crude glycerol and CWP in sustainable and cost-effective high-density Escherichia coli cultures, potentially applicable to recombinant production of various proteins.
Articolo in rivista - Articolo scientifico
Agro-food biomasses; GH42 enzyme; High-density biomass culture; Lactose hydrolysis;
English
2-lug-2024
2024
406
August 2024
131063
open
Bianchi, G., Pessina, A., Ami, D., Signorelli, S., de Divitiis, M., Natalello, A., et al. (2024). Sustainable production of a biotechnologically relevant β-galactosidase in Escherichia coli cells using crude glycerol and cheese whey permeate. BIORESOURCE TECHNOLOGY, 406(August 2024) [10.1016/j.biortech.2024.131063].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/493559
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