According to previous reports, Lactococcus lactis imports glucose via two distinct phosphoenolpyruvate: phosphotransferase systems (mannose-PTS and cellobiose-PTS) and one or more unknown non-PTS permease(s). GlcU was identified as the sole non-PTS permease involved in the transport of glucose. Additionally, the biochemical properties of PTS(Man), PTS(Cel) and GlcU were characterized in double knockout mutants with glucose uptake restricted to a single system. Transport susceptibility to protonophores indicated that glucose uptake via GlcU is proton-motive force dependent. Competition assays revealed a high specificity of GlcU for glucose. Furthermore, the permease has low affinity for glucose and displays strong preference for the beta-ano...
In a number of previous studies, our group has discovered an alternative pathway for lactose utiliza...
In Corynebacterium glutamicum, the phosphoenolpyruvate-dependent sugar phosphotransferase system (PT...
Accumulation of galactose in dairy products due to partial lactose fermentation by lactic acid bacte...
According to previous reports, Lactococcus lactis imports glucose via two distinct phosphoenolpyruva...
According to previous reports, Lactococcus lactis imports glucose via two distinct phosphoenolpyruva...
Since the 1970s, galactose metabolism in Lactococcus lactis has been in debate. Different studies le...
Since the 1970s, galactose metabolism in Lactococcus lactis has been in debate. Different studies le...
Since the 1970s, galactose metabolism in Lactococcus lactis has been in debate. Different studies le...
<p>Since the 1970s, galactose metabolism in Lactococcus lactis has been in debate. Different studies...
<p>Since the 1970s, galactose metabolism in Lactococcus lactis has been in debate. Different studies...
<p>Since the 1970s, galactose metabolism in Lactococcus lactis has been in debate. Different studies...
Lactobacillus sanfrancisco LTH 2581 can use only glucose and maltose as sources of metabolic energy....
In this study, we present a glimpse of the diversity of Lactococcus lactis subsp. lactis IL1403 beta...
Lactose metabolism is one of the most important areas of research on Lactic Acid Bacteria (LAB). In ...
In a number of previous studies, our group has discovered an alternative pathway for lactose utiliza...
In Corynebacterium glutamicum, the phosphoenolpyruvate-dependent sugar phosphotransferase system (PT...
Accumulation of galactose in dairy products due to partial lactose fermentation by lactic acid bacte...
According to previous reports, Lactococcus lactis imports glucose via two distinct phosphoenolpyruva...
According to previous reports, Lactococcus lactis imports glucose via two distinct phosphoenolpyruva...
Since the 1970s, galactose metabolism in Lactococcus lactis has been in debate. Different studies le...
Since the 1970s, galactose metabolism in Lactococcus lactis has been in debate. Different studies le...
Since the 1970s, galactose metabolism in Lactococcus lactis has been in debate. Different studies le...
<p>Since the 1970s, galactose metabolism in Lactococcus lactis has been in debate. Different studies...
<p>Since the 1970s, galactose metabolism in Lactococcus lactis has been in debate. Different studies...
<p>Since the 1970s, galactose metabolism in Lactococcus lactis has been in debate. Different studies...
Lactobacillus sanfrancisco LTH 2581 can use only glucose and maltose as sources of metabolic energy....
In this study, we present a glimpse of the diversity of Lactococcus lactis subsp. lactis IL1403 beta...
Lactose metabolism is one of the most important areas of research on Lactic Acid Bacteria (LAB). In ...
In a number of previous studies, our group has discovered an alternative pathway for lactose utiliza...
In Corynebacterium glutamicum, the phosphoenolpyruvate-dependent sugar phosphotransferase system (PT...
Accumulation of galactose in dairy products due to partial lactose fermentation by lactic acid bacte...