نتایج جستجو برای: lissencephaly

تعداد نتایج: 686  

Journal: :The Journal of biological chemistry 2012
Manami Toriyama Norikazu Mizuno Takashi Fukami Tokuichi Iguchi Michinori Toriyama Kenji Tago Hiroshi Itoh

Doublecortin (DCX) is a microtubule-associated protein that is specifically expressed in neuronal cells. Genetic mutation of DCX causes lissencephaly disease. Although the abnormal cortical lamination in lissencephaly is thought to be attributable to neuronal cell migration defects, the regulatory mechanisms governing interactions between DCX and cytoskeleton in the migration of neuronal progen...

Journal: :The Journal of neuroscience : the official journal of the Society for Neuroscience 2003
Michael J Gambello Dawn L Darling Jessica Yingling Teruyuki Tanaka Joseph G Gleeson Anthony Wynshaw-Boris

Humans with heterozygous inactivating mutations of the Lis1 gene display type I lissencephaly, a severe form of cortical dysplasia hypothesized to result from abnormal neuronal migration. Previously we reported the construction of an allelic series of the Lis1 gene in mice to analyze the effects of graded reduction of LIS1 protein on the pathogenesis of this disorder and demonstrated a cell aut...

Journal: :Development 2010
Jinte Middeldorp Karin Boer Jacqueline A Sluijs Lidia De Filippis Férechté Encha-Razavi Angelo L Vescovi Dick F Swaab Eleonora Aronica Elly M Hol

A subpopulation of glial fibrillary acidic protein (GFAP)-expressing cells located along the length of the lateral ventricles in the subventricular zone (SVZ) have been identified as the multipotent neural stem cells of the adult mammalian brain. We have previously found that, in the adult human brain, a splice variant of GFAP, termed GFAPdelta, was expressed specifically in these cells. To inv...

Journal: :Journal of neurophysiology 2007
Daniel L Jones Scott C Baraban

Heterozygous mutation or deletion of a lissencephaly gene (Lis1) in humans is associated with a severe disruption of cortical and hippocampal lamination, cognitive deficit, and severe seizures. Mice with one null allele of Lis1 (Lis1(+/-) mice) exhibit significant brain malformations and slowed migration of interneuron precursors. Although hyperexcitability was demonstrated in dysplastic hippoc...

Journal: :Neurology India 2007
Shubha R Phadke K M Girisha Rajendra V Phadke

Pachygyria is a disorder of neuronal migration. We report an Indian family with four siblings with developmental delay, infrequent seizures, normal head size and mild to moderate mental retardation. Two of them had bilaterally symmetrical frontotemporal pachygyria. Dysmorphism and neurological signs were absent in the affected subjects. Affected male and female siblings with normal parents sugg...

Journal: :Journal of cell science 2007
Lotte B Pedersen Panteleimon Rompolas Søren T Christensen Joel L Rosenbaum Stephen M King

Lissencephaly is a developmental brain disorder characterized by a smooth cerebral surface, thickened cortex and misplaced neurons. Classical lissencephaly is caused by mutations in LIS1, which encodes a WD-repeat protein involved in cytoplasmic dynein regulation, mitosis and nuclear migration. Several proteins required for nuclear migration in Aspergillus bind directly to Lis1, including NudC....

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