Brain development is severely defective in children with lissencephaly. The highly organized distribution of neurons within the cerebral cortex is disrupted, a condition that might arise from improper migration of neuronal progenitors to their cortical destinations. Type I lissencephaly results from mutations in the LIS1 gene, which has been implicated in the cytoplasmic dynein and platelet-activating factor pathways. Recent studies have identified roles for the product of LIS1 in nuclear migration, mitotic spindle orientation and chromosome alignment, where it appears to act in concert with cytoplasmic dynein. A unifying hypothesis for the subcellular function of LIS1 is presented
Important clues to how the mammalian cerebral cortex develops are provided by the analysis of geneti...
Mutations in the human LIS1 gene cause the smooth brain disease classical lissencephaly. To understa...
Lissencephaly is a severe brain malformation in humans. To study the function of the gene mutated in...
AbstractLissencephaly is a brain developmental disorder characterized by disorganization of the cort...
Lissencephaly is a brain developmental disorder characterized by disorganization of the cortical reg...
Mutations in the LIS1 gene cause gross histological disorganization of the developing human brain, r...
Spontaneous mutations in the human LIS1 gene are responsible for Type I lissencephaly ( smooth brain...
Miller-Dieker lissencephaly syndrome (MDS) is a human developmental brain malformation caused by neu...
Lissencephaly is a severe brain malformation in humans. To study the function of the gene mutated in...
Lissencephaly (smooth brain) is a brain malformation disorder resulted from defective neuronal migra...
Human brain malformations, such as Miller-Dieker syndrome (MDS) or isolated lissencephaly sequence (...
Lissencephaly ('smooth brain') is a severe brain disease associated with numerous symptoms, includin...
Humans with mutations in either DCX or LIS1 display nearly identical neuronal migration defects, kno...
Heterozygous LIS1 mutations are responsible for the human neuronal migration disorder lissencephaly....
Mutations in the human LIS1 gene cause type I lissencephaly, a severe brain developmental disease in...
Important clues to how the mammalian cerebral cortex develops are provided by the analysis of geneti...
Mutations in the human LIS1 gene cause the smooth brain disease classical lissencephaly. To understa...
Lissencephaly is a severe brain malformation in humans. To study the function of the gene mutated in...
AbstractLissencephaly is a brain developmental disorder characterized by disorganization of the cort...
Lissencephaly is a brain developmental disorder characterized by disorganization of the cortical reg...
Mutations in the LIS1 gene cause gross histological disorganization of the developing human brain, r...
Spontaneous mutations in the human LIS1 gene are responsible for Type I lissencephaly ( smooth brain...
Miller-Dieker lissencephaly syndrome (MDS) is a human developmental brain malformation caused by neu...
Lissencephaly is a severe brain malformation in humans. To study the function of the gene mutated in...
Lissencephaly (smooth brain) is a brain malformation disorder resulted from defective neuronal migra...
Human brain malformations, such as Miller-Dieker syndrome (MDS) or isolated lissencephaly sequence (...
Lissencephaly ('smooth brain') is a severe brain disease associated with numerous symptoms, includin...
Humans with mutations in either DCX or LIS1 display nearly identical neuronal migration defects, kno...
Heterozygous LIS1 mutations are responsible for the human neuronal migration disorder lissencephaly....
Mutations in the human LIS1 gene cause type I lissencephaly, a severe brain developmental disease in...
Important clues to how the mammalian cerebral cortex develops are provided by the analysis of geneti...
Mutations in the human LIS1 gene cause the smooth brain disease classical lissencephaly. To understa...
Lissencephaly is a severe brain malformation in humans. To study the function of the gene mutated in...