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1.
J Comp Neurol ; 518(7): 1113-32, 2010 Apr 01.
Article in English | MEDLINE | ID: mdl-20127821

ABSTRACT

Mutations in the human L1CAM gene cause X-linked hydrocephalus and MASA (Mental retardation, Aphasia, Shuffling gait, Adducted thumbs) syndrome. In vitro studies have shown that the L1 cytoplasmic domain (L1CD) is involved in L1 trafficking, neurite branching, signaling, and interactions with the cytoskeleton. L1cam knockout (L1(KO)) mice have hydrocephalus, a small cerebellum, hyperfasciculation of corticothalamic tracts, and abnormal peripheral nerves. To explore the function of the L1CD, we made three new mice lines in which different parts of the L1CD have been altered. In all mutant lines L1 protein is expressed and transported into the axon. Interestingly, these new L1CD mutant lines display normal brain morphology. However, the expression of L1 protein in the adult is dramatically reduced in the two L1CD mutant lines that lack the ankyrin-binding region and they show defects in motor function. Therefore, the L1CD is not responsible for the major defects observed in L1(KO) mice, yet it is required for continued L1 protein expression and motor function in the adult.


Subject(s)
Behavior, Animal/physiology , Brain/physiology , Mutation , Neural Cell Adhesion Molecule L1/genetics , Neural Cell Adhesion Molecule L1/metabolism , Neurons/metabolism , Animals , Axons/metabolism , Axons/ultrastructure , Blotting, Western , Brain/growth & development , Brain/metabolism , Cell Culture Techniques , Hippocampus/cytology , Hippocampus/metabolism , Immunohistochemistry , Maze Learning/physiology , Memory/physiology , Mice , Mice, Knockout , Microscopy, Electron , Molecular Sequence Data , Motor Activity/physiology , Reverse Transcriptase Polymerase Chain Reaction , Sciatic Nerve/ultrastructure , Spatial Behavior/physiology , Time Factors
2.
Neurogenetics ; 11(1): 53-71, 2010 Feb.
Article in English | MEDLINE | ID: mdl-19565280

ABSTRACT

Humans with L1 cell adhesion molecule (L1CAM) mutations exhibit X-linked hydrocephalus, as well as other severe neurological disorders. L1-6D mutant mice, which are homozygous for a deletion that removes the sixth immunoglobulin-like domain of L1cam, seldom display hydrocephalus on the 129/Sv background. However, the same L1-6D mutation produces severe hydrocephalus on the C57BL/6J background. To begin to understand how L1cam deficiencies result in hydrocephalus and to identify modifier loci that contribute to X-linked hydrocephalus by genetically interacting with L1cam, we conducted a genome-wide scan on F2 L1-6D mice, bred from L1-6D 129S2/SvPasCrlf and C57BL/6J mice. Linkage studies, utilizing chi-square tests and quantitative trait loci mapping techniques, were performed. Candidate modifier loci were further investigated in an extension study. Linkage was confirmed for a locus on chromosome 5, which we named L1cam hydrocephalus modifier 1 (L1hydro1), p = 4.04 X 10(-11).


Subject(s)
Hydrocephalus/genetics , Neural Cell Adhesion Molecule L1/genetics , Animals , Brain/pathology , Chromosome Mapping , Disease Models, Animal , Female , Genetic Linkage , Humans , Male , Mice , Mice, Inbred C57BL , Mice, Knockout , Mutation , Quantitative Trait Loci
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