Calsyntenin-1 Docks Vesicular Cargo to Kinesin-1

Author:

Konecna Anetta1,Frischknecht Renato12,Kinter Jochen1,Ludwig Alexander1,Steuble Martin1,Meskenaite Virginia1,Indermühle Martin1,Engel Marianne1,Cen Chuan1,Mateos José-Maria3,Streit Peter3,Sonderegger Peter1

Affiliation:

1. *Department of Biochemistry and

2. Leibniz Institute for Neurobiology, 39 118 Magdeburg, Germany

3. Brain Research Institute, University of Zurich, CH-8057 Zürich, Switzerland; and

Abstract

We identified a direct interaction between the neuronal transmembrane protein calsyntenin-1 and the light chain of Kinesin-1 (KLC1). GST pulldowns demonstrated that two highly conserved segments in the cytoplasmic domain of calsyntenin-1 mediate binding to the tetratricopeptide repeats of KLC1. A complex containing calsyntenin-1 and the Kinesin-1 motor was isolated from developing mouse brain and immunoelectron microscopy located calsyntenin-1 in association with tubulovesicular organelles in axonal fiber tracts. In primary neuronal cultures, calsyntenin-1–containing organelles were aligned along microtubules and partially colocalized with Kinesin-1. Using live imaging, we showed that these organelles are transported along axons with a velocity and processivity typical for fast axonal transport. Point mutations in the two kinesin-binding segments of calsyntenin-1 significantly reduced binding to KLC1 in vitro, and vesicles bearing mutated calsyntenin-1 exhibited a markedly altered anterograde axonal transport. In summary, our results indicate that calsyntenin-1 links a certain type of vesicular and tubulovesicular organelles to the Kinesin-1 motor.

Publisher

American Society for Cell Biology (ASCB)

Subject

Cell Biology,Molecular Biology

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