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Regulation of KIF1A-Driven Dense Core Vesicle Transport: Ca2+/CaM Controls DCV Binding and Liprin-α/TANC2 Recruits DCVs to Postsynaptic Sites.

Authors :
Stucchi, Riccardo
Plucińska, Gabriela
Hummel, Jessica J.A.
Zahavi, Eitan E.
Guerra San Juan, Irune
Klykov, Oleg
Scheltema, Richard A.
Altelaar, A.F. Maarten
Hoogenraad, Casper C.
Source :
Cell Reports; Jul2018, Vol. 24 Issue 3, p685-700, 16p
Publication Year :
2018

Abstract

Summary Tight regulation of neuronal transport allows for cargo binding and release at specific cellular locations. The mechanisms by which motor proteins are loaded on vesicles and how cargoes are captured at appropriate sites remain unclear. To better understand how KIF1A-driven dense core vesicle (DCV) transport is regulated, we identified the KIF1A interactome and focused on three binding partners, the calcium binding protein calmodulin (CaM) and two synaptic scaffolding proteins: liprin-α and TANC2. We showed that calcium, acting via CaM, enhances KIF1A binding to DCVs and increases vesicle motility. In contrast, liprin-α and TANC2 are not part of the KIF1A-cargo complex but capture DCVs at dendritic spines. Furthermore, we found that specific TANC2 mutations—reported in patients with different neuropsychiatric disorders—abolish the interaction with KIF1A. We propose a model in which Ca 2+ /CaM regulates cargo binding and liprin-α and TANC2 recruit KIF1A-transported vesicles. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
26391856
Volume :
24
Issue :
3
Database :
Complementary Index
Journal :
Cell Reports
Publication Type :
Academic Journal
Accession number :
131070871
Full Text :
https://doi.org/10.1016/j.celrep.2018.06.071