Literature DB >> 17596209

More than just synaptic building blocks: scaffolding proteins of the post-synaptic density regulate dendritic patterning.

John P Vessey1, Daniela Karra.   

Abstract

The dendritic arbor is responsible for receiving and consolidating neuronal input. Outgrowth and morphogenesis of the arbor are complex stages of development that are poorly understood. However, recent findings have identified synaptic scaffolding proteins as novel regulators of these important events. Scaffolding proteins are enriched in the post-synaptic density where they bind and bring into close proximity neurotransmitter receptors, signaling molecules, and regulators of the actin cytoskeleton. This property is important for dendritic spine morphogenesis and maintenance in the mature neuron. Scaffolding proteins are now being described as key regulators of neurite outgrowth, dendritic development, and pattern formation in immature neurons. These proteins, which include post-synaptic-95, Shank and Densin-180, as well as many of their interacting partners, appear to regulate both the microtubule and actin cytoskeleton to influence dendrite morphology. Through a large array of protein-protein interaction domains, scaffolding proteins are able to form large macromolecular complexes that include cytoskeletal motor proteins as well as microtubule and actin regulatory molecules. Together, the new findings form a persuasive argument that scaffolding proteins deliver critical regulatory elements to sites of dendritic outgrowth and branching to modulate the formation and maintenance of the dendritic arbor.

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Year:  2007        PMID: 17596209     DOI: 10.1111/j.1471-4159.2007.04662.x

Source DB:  PubMed          Journal:  J Neurochem        ISSN: 0022-3042            Impact factor:   5.372


  20 in total

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4.  Effects of substrate stiffness and cell density on primary hippocampal cultures.

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6.  Ankyrin Repeat-rich Membrane Spanning/Kidins220 protein regulates dendritic branching and spine stability in vivo.

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Journal:  BMC Evol Biol       Date:  2010-02-03       Impact factor: 3.260

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9.  Palmitoylation-dependent neurodevelopmental deficits in a mouse model of 22q11 microdeletion.

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10.  miRNA regulons associated with synaptic function.

Authors:  Maria Paschou; Maria D Paraskevopoulou; Ioannis S Vlachos; Pelagia Koukouraki; Artemis G Hatzigeorgiou; Epaminondas Doxakis
Journal:  PLoS One       Date:  2012-10-08       Impact factor: 3.240

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