The cellular invasion machinery of the enteric pathogen Salmonella consists of a type III secretion system (T3SS) with injectable virulence factors that induce uptake by macropinocytosis. Salmonella invasion at the apical surface of intestinal epithelial cells is inefficient, presumably because of a glycosylated barrier formed by transmembrane mucins that prevents T3SS contact with host cells. We observed that Salmonella is capable of apical invasion of intestinal epithelial cells that express the transmembrane mucin MUC1. Knockout of MUC1 in HT29-MTX cells or removal of MUC1 sialic acids by neuraminidase treatment reduced Salmonella apical invasion but did not affect lateral invasion that is not hampered by a defensive barrier. A Salmonell...
At the intestinal host-microbe interface, the transmembrane mucin MUC1 can function as a physical ba...
By invading epithelial cells and disrupting cell-cell junctions, Salmonella enterica serovar Typhimu...
By invading epithelial cells and disrupting cell-cell junctions, Salmonella enterica serovar Typhimu...
The cellular invasion machinery of the enteric pathogen Salmonella consists of a type III secretion ...
The cellular invasion machinery of the enteric pathogen Salmonella consists of a type III secretion ...
The cellular invasion machinery of the enteric pathogen Salmonella consists of a type III secretion ...
The cellular invasion machinery of the enteric pathogen Salmonella consists of a type III secretion ...
The cellular invasion machinery of the enteric pathogen Salmonella consists of a type III secretion ...
(A) MUC1 is expressed on the apical surface of intestinal epithelial cells. Salmonella breaches the ...
MUC1 is a transmembrane mucin that is expressed at the apical surface of normal epithelial cells. It...
MUC1 is a transmembrane mucin that is expressed at the apical surface of normal epithelial cells. It...
SiiE-positive Salmonella closely associate with MUC1 at the apical surface while invaded Salmonella ...
(A) Immunofluorescence confocal microscopy imaging of confluent HT29-MTX cells infected with S. Ente...
The food-borne pathogen Salmonella enterica serovar Typhimurium invades mammalian epithelial cells. ...
At the intestinal host-microbe interface, the transmembrane mucin MUC1 can function as a physical ba...
At the intestinal host-microbe interface, the transmembrane mucin MUC1 can function as a physical ba...
By invading epithelial cells and disrupting cell-cell junctions, Salmonella enterica serovar Typhimu...
By invading epithelial cells and disrupting cell-cell junctions, Salmonella enterica serovar Typhimu...
The cellular invasion machinery of the enteric pathogen Salmonella consists of a type III secretion ...
The cellular invasion machinery of the enteric pathogen Salmonella consists of a type III secretion ...
The cellular invasion machinery of the enteric pathogen Salmonella consists of a type III secretion ...
The cellular invasion machinery of the enteric pathogen Salmonella consists of a type III secretion ...
The cellular invasion machinery of the enteric pathogen Salmonella consists of a type III secretion ...
(A) MUC1 is expressed on the apical surface of intestinal epithelial cells. Salmonella breaches the ...
MUC1 is a transmembrane mucin that is expressed at the apical surface of normal epithelial cells. It...
MUC1 is a transmembrane mucin that is expressed at the apical surface of normal epithelial cells. It...
SiiE-positive Salmonella closely associate with MUC1 at the apical surface while invaded Salmonella ...
(A) Immunofluorescence confocal microscopy imaging of confluent HT29-MTX cells infected with S. Ente...
The food-borne pathogen Salmonella enterica serovar Typhimurium invades mammalian epithelial cells. ...
At the intestinal host-microbe interface, the transmembrane mucin MUC1 can function as a physical ba...
At the intestinal host-microbe interface, the transmembrane mucin MUC1 can function as a physical ba...
By invading epithelial cells and disrupting cell-cell junctions, Salmonella enterica serovar Typhimu...
By invading epithelial cells and disrupting cell-cell junctions, Salmonella enterica serovar Typhimu...