Publication | Closed Access
Embryonic mesodermal defects in α5 integrin-deficient mice
691
Citations
56
References
1993
Year
Integrin GeneDevelopmental BiologyTissue DevelopmentSignal Transductionα5 Integrin-deficient MiceEmbryos ProgressMedicineBone Morphogenic ProteinAlpha 5Cell-matrix InteractionMorphogenesisCytoskeletonEmbryonic DevelopmentStem CellsCell BiologyCellular Physiology
A loss of function mutation of the murine alpha 5 integrin gene generated by gene targeting in embryonic stem cells is a recessive embryonic lethal. The mutant embryos start to show observable defects by day 9 of gestation and die around day 10-11. The alpha 5-null embryos have pronounced defects in posterior trunk and yolk sac mesodermal structures, suggesting a role for alpha 5 beta 1 integrin in mesoderm formation, movement or function. However, the embryos progress significantly further than embryos null for fibronectin, for which alpha 5 beta 1 integrin is a receptor, suggesting the involvement of other fibronectin receptors. In vitro studies on cells derived from the alpha 5-null embryos confirm that the alpha 5 beta 1 integrin is not expressed on mutant cells and show that the mutant cells are able to assemble fibronectin matrix, form focal contacts, and migrate on fibronectin despite the complete absence of the alpha 5 beta 1 fibronectin receptor integrin. All these functions have previously been thought to involve or require alpha 5 beta 1. The results presented show that these cellular functions involving fibronectin can proceed using other receptors.
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