Literature DB >> 17643120

A Drosophila kinesin required for synaptic bouton formation and synaptic vesicle transport.

Eunju Pack-Chung1, Peri T Kurshan, Dion K Dickman, Thomas L Schwarz.   

Abstract

The morphological transition of growth cones to synaptic boutons characterizes synaptogenesis. Here we have isolated mutations in immaculate connections (imac; CG8566), a previously uncharacterized Drosophila gene encoding a member of the Kinesin-3 family. Whereas earlier studies in Drosophila implicated Kinesin-1 in transporting synaptic vesicle precursors, we find that Imac is essential for this transport. An unexpected feature of imac mutants is the failure of synaptic boutons to form. Motor neurons lacking imac properly target to muscles but remain within target fields as thin processes, a structure that is distinct from either growth cones or mature terminals. Few active zones form at these endings. We show that the arrest of synaptogenesis is not a secondary consequence of the absence of transmission. Our data thus indicate that Imac transports components required for synaptic maturation and provide insight into presynaptic maturation as a process that can be differentiated from axon outgrowth and targeting.

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Year:  2007        PMID: 17643120     DOI: 10.1038/nn1936

Source DB:  PubMed          Journal:  Nat Neurosci        ISSN: 1097-6256            Impact factor:   24.884


  85 in total

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Review 4.  Mitochondrial trafficking in neurons.

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5.  Presynaptic alpha2delta-3 is required for synaptic morphogenesis independent of its Ca2+-channel functions.

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7.  Autoinhibition of a Neuronal Kinesin UNC-104/KIF1A Regulates the Size and Density of Synapses.

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8.  Identification of an axonal kinesin-3 motor for fast anterograde vesicle transport that facilitates retrograde transport of neuropeptides.

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9.  Carboxypeptidase E cytoplasmic tail-driven vesicle transport is key for activity-dependent secretion of peptide hormones.

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10.  Kinesin-3 mediates axonal sorting and directional transport of alphaherpesvirus particles in neurons.

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