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The C-terminal tails of heterotrimeric kinesin-2 motor subunits directly bind to α-tubulin1: Possible implications for cilia-specific tubulin entry.

Authors :
Girotra, Mukul
Srivastava, Shalini
Kulkarni, Anuttama
Barbora, Ayan
Bobra, Kratika
Ghosal, Debnath
Devan, Pavithra
Aher, Amol
Jain, Akanksha
Panda, Dulal
Ray, Krishanu
Source :
Traffic. Feb2017, Vol. 18 Issue 2, p123-133. 11p.
Publication Year :
2017

Abstract

The assembly of microtubule-based cytoskeleton propels the cilia and flagella growth. Previous studies have indicated that the kinesin-2 family motors transport tubulin into the cilia through intraflagellar transport. Here, we report a direct interaction between the C-terminal tail fragments of heterotrimeric kinesin-2 and α-tubulin1 isoforms in vitro. Blot overlay screen, affinity purification from tissue extracts, cosedimentation with subtilisin-treated microtubule and LC-ESI-MS/ MS characterization of the tail-fragment-associated tubulin identified an association between the tail domains and α- tubulin1A/D isotype. The interaction was confirmed by Forster's resonance energy transfer assay in tissue-cultured cells. The overexpression of the recombinant tails in NIH3T3 cells affected the primary cilia growth, which was rescued by coexpression of a α-tubulin1 transgene. Furthermore, fluorescent recovery after photobleach analysis in the olfactory cilia of Drosophila indicated that tubulin is transported in a non-particulate form requiring kinesin-2. These results provide additional new insight into the mechanisms underlying selective tubulin isoform enrichment in the cilia. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
13989219
Volume :
18
Issue :
2
Database :
Academic Search Index
Journal :
Traffic
Publication Type :
Academic Journal
Accession number :
120928656
Full Text :
https://doi.org/10.1111/tra.12461