<i>ANK2</i> autism mutation targeting giant ankyrin-B promotes axon branching and ectopic connectivity.
basic_science · Level V
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- Record sourced from PubMed, PMID 31285321.
- Also identified by DOI 10.1073/pnas.1904348116 and PMC identifier 6660793.
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Abstract
Giant ankyrin-B (ankB) is a neurospecific alternatively spliced variant of <i>ANK2</i>, a high-confidence autism spectrum disorder (ASD) gene. We report that a mouse model for human ASD mutation of giant ankB exhibits increased axonal branching in cultured neurons with ectopic CNS axon connectivity, as well as with a transient increase in excitatory synapses during postnatal development. We elucidate a mechanism normally limiting axon branching, whereby giant ankB localizes to periodic axonal plasma membrane domains through L1 cell-adhesion molecule protein, where it couples microtubules to the plasma membrane and prevents microtubule entry into nascent axon branches. Giant ankB mutation or deficiency results in a dominantly inherited impairment in selected communicative and social behaviors combined with superior executive function. Thus, gain of axon branching due to giant ankB-deficiency/mutation is a candidate cellular mechanism to explain aberrant structural connectivity and penetrant behavioral consequences in mice as well as humans bearing ASD-related <i>ANK2</i> mutations.
Medical subject headings
- Ankyrins
- Autism Spectrum Disorder
- Neural Cell Adhesion Molecule L1
- Neuronal Outgrowth
- Neurons
- Synapses