Abstract
Angelman syndrome (AS) is a severe disorder of postnatal brain development caused by neuron-specific loss of the HECT (homologous to E6AP carboxy terminus) domain E3 ubiquitin ligase Ube3a/E6AP. The cellular role of Ube3a remains enigmatic despite recent descriptions of synaptic and behavioral deficits in AS mouse models. Although neuron-specific imprinting is thought to limit the disease to the brain, Ube3a is expressed ubiquitously, suggesting a broader role in cellular function. In the current study, we demonstrate a profound structural disruption and cisternal swelling of the Golgi apparatus (GA) in the cortex ofAS(UBE3Am-/p+) mice. In Ube3a knockdown cell lines and UBE3Am-/p+cortical neurons, theGAis severely under-acidified, leading to osmotic swelling. Both in vitro and in vivo, the loss of Ube3a and corresponding elevated pH of the GA is associated with a marked reduction in protein sialylation, a process highly dependent on intralumenal Golgi pH. Altered ion homeostasis of the GA may provide a common cellular pathophysiology underlying the diverse plasticity and neurodevelopmental deficits associated with AS. © 2013 the authors.
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CITATION STYLE
Condon, K. H., Ho, J., Robinson, C. G., Hanus, C., & Ehlers, M. D. (2013). The angelman syndrome protein Ube3a/E6AP is required for golgi acidification and surface protein sialylation. Journal of Neuroscience, 33(9), 3799–3814. https://doi.org/10.1523/JNEUROSCI.1930-11.2013
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