Compound Genetic Ablation of Nidogen 1 and 2 Causes Basement Membrane Defects and Perinatal Lethality in Mice
Compound Genetic Ablation of Nidogen 1 and 2 Causes Basement Membrane Defects and Perinatal Lethality in Mice
Nidogen 1 and 2 are basement membrane glycoproteins, and previous biochemical and functional studies indicate that they may play a crucial role in basement membrane assembly. While they show a divergent expression pattern in certain adult tissues, both have a similar distribution during development. Gene knockout studies in mice demonstrated that the loss of either isoform has no effect on basement membrane formation and organ development, suggesting complementary functions. Here, we show that this is indeed the case. Deficiency of both nidogens in mice resulted in perinatal lethality. Nidogen 1 and 2 do not appear to be crucial in establishing tissue architecture during organ development; instead, they are essential for late stages of lung development and for maintenance and/or integrity of cardiac tissue. These organ defects are not compatible with postnatal survival. Ultrastructural analysis suggests that the phenotypes directly result from basement membrane changes. However, despite the ubiquitous presence of nidogens in basement membranes, defects do not occur in all tissues or in all basement membranes, suggesting a varying spectrum of roles for nidogens in the basement membrane.
- University of Southampton United Kingdom
- Baylor College of Medicine United States
- Max Planck Institute of Biochemistry Germany
- University of Göttingen Germany
- University of Cologne Germany
Membrane Glycoproteins, Calcium-Binding Proteins, 610, Cell Differentiation, Heart, Kidney, Basement Membrane, Mice, Mutation, Animals, Protein Isoforms, Cell Adhesion Molecules, Lung
Membrane Glycoproteins, Calcium-Binding Proteins, 610, Cell Differentiation, Heart, Kidney, Basement Membrane, Mice, Mutation, Animals, Protein Isoforms, Cell Adhesion Molecules, Lung
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