Transcriptome analysis comparing the gene expression of A. muciniphila grown on mucin or glucose media confirmed the activity of the genes involved in mucin degradation, and revealed most of them to be upregulated in the presence of mucin. A. muciniphila grown on glucose showed a stress response and upregulation of specific genes, such as Amuc_1094 which was identified as a glucokinase induced by glucose. The transcriptional response was confirmed by a proteome analysis, reinforcing the adaptation of A. muciniphila to the mucosal environment. These new findings provide molecular insights into the lifestyle of A. muciniphila, and further confirm its role as a mucin specialist in the gut
Akkermansia muciniphila is widely considered a next-generation beneficial microbe. This bacterium re...
Akkermansia muciniphila is widely considered a next-generation beneficial microbe. This bacterium re...
Akkermansia muciniphila is widely considered a next-generation beneficial microbe. This bacterium re...
Transcriptome analysis comparing the gene expression of A. muciniphila grown on mucin or glucose med...
The composition and activity of the microbiota in the human gastrointestinal tract are primarily sha...
Akkermansia muciniphila is widely considered a next-generation beneficial microbe. This bacterium re...
The abundance of the human intestinal symbiont Akkermansia muciniphila has found to be inversely cor...
Host glycans are paramount in regulating the symbiotic relationship between humans and their gut bac...
Akkermansia muciniphila is widely considered a next-generation beneficial microbe. This bacterium re...
Akkermansia muciniphila is a champion of mucin degradation in the human gastrointestinal tract. Here...
Akkermansia muciniphila is a champion of mucin degradation in the human gastrointestinal tract. Here...
Akkermansia muciniphila is widely considered a next-generation beneficial microbe. This bacterium re...
Akkermansia muciniphila is widely considered a next-generation beneficial microbe. This bacterium re...
The discovery of Akkermansia muciniphila has opened new avenues for the use of this abundant intesti...
Akkermansia muciniphila is widely considered a next-generation beneficial microbe. This bacterium re...
Akkermansia muciniphila is widely considered a next-generation beneficial microbe. This bacterium re...
Akkermansia muciniphila is widely considered a next-generation beneficial microbe. This bacterium re...
Akkermansia muciniphila is widely considered a next-generation beneficial microbe. This bacterium re...
Transcriptome analysis comparing the gene expression of A. muciniphila grown on mucin or glucose med...
The composition and activity of the microbiota in the human gastrointestinal tract are primarily sha...
Akkermansia muciniphila is widely considered a next-generation beneficial microbe. This bacterium re...
The abundance of the human intestinal symbiont Akkermansia muciniphila has found to be inversely cor...
Host glycans are paramount in regulating the symbiotic relationship between humans and their gut bac...
Akkermansia muciniphila is widely considered a next-generation beneficial microbe. This bacterium re...
Akkermansia muciniphila is a champion of mucin degradation in the human gastrointestinal tract. Here...
Akkermansia muciniphila is a champion of mucin degradation in the human gastrointestinal tract. Here...
Akkermansia muciniphila is widely considered a next-generation beneficial microbe. This bacterium re...
Akkermansia muciniphila is widely considered a next-generation beneficial microbe. This bacterium re...
The discovery of Akkermansia muciniphila has opened new avenues for the use of this abundant intesti...
Akkermansia muciniphila is widely considered a next-generation beneficial microbe. This bacterium re...
Akkermansia muciniphila is widely considered a next-generation beneficial microbe. This bacterium re...
Akkermansia muciniphila is widely considered a next-generation beneficial microbe. This bacterium re...
Akkermansia muciniphila is widely considered a next-generation beneficial microbe. This bacterium re...