SummaryCoordinated migration of newly born neurons to their prospective target laminae is a prerequisite for neural circuit assembly in the developing brain. The evolutionarily conserved LIS1/NDEL1 complex is essential for neuronal migration in the mammalian cerebral cortex. The cytoplasmic nature of LIS1 and NDEL1 proteins suggest that they regulate neuronal migration cell autonomously. Here, we extend mosaic analysis with double markers (MADM) to mouse chromosome 11 where Lis1, Ndel1, and 14-3-3ɛ (encoding a LIS1/NDEL1 signaling partner) are located. Analyses of sparse and uniquely labeled mutant cells in mosaic animals reveal distinct cell-autonomous functions for these three genes. Lis1 regulates neuronal migration efficiency in a dose-...
Important clues to how the mammalian cerebral cortex develops are provided by the analysis of geneti...
AbstractThe development of the cerebral cortex is a highly orchestrated process of cell division and...
AbstractMutations in mammalian Lis1 (Pafah1b1) result in neuronal migration defects. Several lines o...
SummaryCoordinated migration of newly born neurons to their prospective target laminae is a prerequi...
Heterozygous LIS1 mutations are the most common cause of human lissencephaly, a human neuronal migra...
Coordinated migration of newly-born neurons to their target territories is essential for correct neu...
AbstractCorrect neuronal migration and positioning during cortical development are essential for pro...
Lissencephaly is a devastating developmental brain disorder caused by LIS1 haploinsufficiency. This ...
Migration of neurons is a fundamental process of development of the mammalian neocortex. This migrat...
AbstractLIS1, a microtubule-associated protein, is required for neuronal migration, but the precise ...
Miller-Dieker lissencephaly syndrome (MDS) is a human developmental brain malformation caused by neu...
Lis1 and Ndel1 are essential for animal development. They interact directly with one another and wit...
Like other motile cells, neurons migrate in three schematic steps, namely leading edge extension, nu...
Neuronal migration is a fundamental process in developing cerebral cortex. During embryonic developm...
AbstractImportant clues to how the mammalian cerebral cortex develops are provided by the analysis o...
Important clues to how the mammalian cerebral cortex develops are provided by the analysis of geneti...
AbstractThe development of the cerebral cortex is a highly orchestrated process of cell division and...
AbstractMutations in mammalian Lis1 (Pafah1b1) result in neuronal migration defects. Several lines o...
SummaryCoordinated migration of newly born neurons to their prospective target laminae is a prerequi...
Heterozygous LIS1 mutations are the most common cause of human lissencephaly, a human neuronal migra...
Coordinated migration of newly-born neurons to their target territories is essential for correct neu...
AbstractCorrect neuronal migration and positioning during cortical development are essential for pro...
Lissencephaly is a devastating developmental brain disorder caused by LIS1 haploinsufficiency. This ...
Migration of neurons is a fundamental process of development of the mammalian neocortex. This migrat...
AbstractLIS1, a microtubule-associated protein, is required for neuronal migration, but the precise ...
Miller-Dieker lissencephaly syndrome (MDS) is a human developmental brain malformation caused by neu...
Lis1 and Ndel1 are essential for animal development. They interact directly with one another and wit...
Like other motile cells, neurons migrate in three schematic steps, namely leading edge extension, nu...
Neuronal migration is a fundamental process in developing cerebral cortex. During embryonic developm...
AbstractImportant clues to how the mammalian cerebral cortex develops are provided by the analysis o...
Important clues to how the mammalian cerebral cortex develops are provided by the analysis of geneti...
AbstractThe development of the cerebral cortex is a highly orchestrated process of cell division and...
AbstractMutations in mammalian Lis1 (Pafah1b1) result in neuronal migration defects. Several lines o...