Plastin 1 (I-plastin, fimbrin) along with villin and espin is a prominent actin-bundling protein of the intestinal brush border microvilli. We demonstrate here that plastin 1 accumulates in the terminal web and interacts with keratin 19, possibly contributing to anchoring the rootlets to the keratin network. This prompted us to investigate the importance of plastin 1 in brush border assembly. Although in vivo neither villin nor espin is required for brush border structure, plastin 1-deficient mice have conspicuous ultrastructural alterations: microvilli are shorter and constricted at their base, and, strikingly, their core actin bundles lack true rootlets. The composition of the microvilli themselves is apparently normal, whereas that of th...
Keratin 8 (K8) is the main intestinal epithelial intermediate filament protein with proposed roles f...
The small intestine is functionally dependent on the presence of the brush border, a tightly packed ...
SummaryTransporting and sensory epithelial cells shape apical specializations using protocadherin-ba...
Plastin 1 (I-plastin, fimbrin) along with villin and espin is a prominent actin-bundling protein of ...
SummaryTransporting epithelial cells build apical microvilli to increase membrane surface area and e...
Actin-bundling proteins are identified as key players in the morphogenesis of thin membrane protrusi...
Plastin (or fimbrin) is an actin-bundling protein consisting of two actin-binding domains in tandem ...
International audienceThe brush border on the apical surface of enterocytes is a highly specialized ...
Transporting epithelial cells build apical microvilli to increase membrane surface area and enhance ...
The small intestine is functionally dependent on the presence of the brush border, a tightly packed ...
Covering the apex of intestinal cells, microvilli are microscopic membrane protrusions structured by...
International audienceActin-bundling proteins are identified as key players in the morphogenesis of ...
BACKGROUND & AIMS: The follicle-associated epithelium (FAE) of Peyer's patches mainly consists o...
AbstractTransfection studies provide supporting evidence for the proposed role of villin and fimbrin...
The enrichment of intermediate filaments in the apical cytoplasm of intestinal cells is evolutionary...
Keratin 8 (K8) is the main intestinal epithelial intermediate filament protein with proposed roles f...
The small intestine is functionally dependent on the presence of the brush border, a tightly packed ...
SummaryTransporting and sensory epithelial cells shape apical specializations using protocadherin-ba...
Plastin 1 (I-plastin, fimbrin) along with villin and espin is a prominent actin-bundling protein of ...
SummaryTransporting epithelial cells build apical microvilli to increase membrane surface area and e...
Actin-bundling proteins are identified as key players in the morphogenesis of thin membrane protrusi...
Plastin (or fimbrin) is an actin-bundling protein consisting of two actin-binding domains in tandem ...
International audienceThe brush border on the apical surface of enterocytes is a highly specialized ...
Transporting epithelial cells build apical microvilli to increase membrane surface area and enhance ...
The small intestine is functionally dependent on the presence of the brush border, a tightly packed ...
Covering the apex of intestinal cells, microvilli are microscopic membrane protrusions structured by...
International audienceActin-bundling proteins are identified as key players in the morphogenesis of ...
BACKGROUND & AIMS: The follicle-associated epithelium (FAE) of Peyer's patches mainly consists o...
AbstractTransfection studies provide supporting evidence for the proposed role of villin and fimbrin...
The enrichment of intermediate filaments in the apical cytoplasm of intestinal cells is evolutionary...
Keratin 8 (K8) is the main intestinal epithelial intermediate filament protein with proposed roles f...
The small intestine is functionally dependent on the presence of the brush border, a tightly packed ...
SummaryTransporting and sensory epithelial cells shape apical specializations using protocadherin-ba...