Sorbitol is claimed to have important health-promoting effects and Lactobacillus casei is a lactic acid bacterium relevant as probiotic and used as a cheese starter culture. A sorbitol-producing L. casei strain might therefore be of considerable interest in the food industry. A recombinant strain of L. casei was constructed by the integration of a d-sorbitol-6-phosphate dehydrogenase-encoding gene (gutF) in the chromosomal lactose operon (strain BL232). gutF expression in this strain followed the same regulation as that of the lac genes, that is, it was repressed by glucose and induced by lactose. (13)C-nuclear magnetic resonance analysis of supernatants of BL232 resting cells demonstrated that, when pre-grown on lactose, cells were able to synthesize sorbitol from glucose. Inactivation of the l-lactate dehydrogenase gene in BL232 led to an increase in sorbitol production, suggesting that the engineered route provides an alternative pathway for NAD(+) regeneration

Nissen Lorenzo , Yebra Maria Jesus, Peréz Martinéz Gaspar (2005). Genetic engineering of Lactobacillus casei producing D-sorbitol. s.l : s.n.

Genetic engineering of Lactobacillus casei producing D-sorbitol

NISSEN, LORENZO;
2005

Abstract

Sorbitol is claimed to have important health-promoting effects and Lactobacillus casei is a lactic acid bacterium relevant as probiotic and used as a cheese starter culture. A sorbitol-producing L. casei strain might therefore be of considerable interest in the food industry. A recombinant strain of L. casei was constructed by the integration of a d-sorbitol-6-phosphate dehydrogenase-encoding gene (gutF) in the chromosomal lactose operon (strain BL232). gutF expression in this strain followed the same regulation as that of the lac genes, that is, it was repressed by glucose and induced by lactose. (13)C-nuclear magnetic resonance analysis of supernatants of BL232 resting cells demonstrated that, when pre-grown on lactose, cells were able to synthesize sorbitol from glucose. Inactivation of the l-lactate dehydrogenase gene in BL232 led to an increase in sorbitol production, suggesting that the engineered route provides an alternative pathway for NAD(+) regeneration
2005
Atti Biofutura 2005
92
92
Nissen Lorenzo , Yebra Maria Jesus, Peréz Martinéz Gaspar (2005). Genetic engineering of Lactobacillus casei producing D-sorbitol. s.l : s.n.
Nissen Lorenzo ; Yebra Maria Jesus; Peréz Martinéz Gaspar
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/13007
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