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Molecular characterization of a trafficking organelle: dissecting the axonal paths of calsyntenin-1 transport vesicles
Authors:Steuble Martin  Gerrits Bertran  Ludwig Alexander  Mateos José María  Diep Tu-My  Tagaya Mitsuo  Stephan Alexander  Schätzle Philipp  Kunz Beat  Streit Peter  Sonderegger Peter
Institution:Department of Biochemistry, University of Zurich, Zurich, Switzerland.
Abstract:Kinesin motors play crucial roles in the delivery of membranous cargo to its destination and thus for the establishment and maintenance of cellular polarization. Recently, calsyntenin-1 was identified as a cargo-docking protein for Kinesin-1-mediated axonal transport of tubulovesicular organelles along axons of central nervous system neurons. To further define the function of calsyntenin-1, we immunoisolated calsyntenin-1 organelles from murine brain homogenates and determined their proteome by MS. We found that calsyntenin-1 organelles are endowed with components of the endosomal trafficking machinery and contained the β-amyloid precursor protein (APP). Detailed biochemical analyses of calsyntenin-1 immunoisolates in conjunction with immunocytochemical colocalization studies with cultured hippocampal neurons, using endosomal marker proteins for distinct subcompartments of the endosomal pathways, indicated that neuronal axons contain at least two distinct, nonoverlapping calsyntenin-1-containing transport packages: one characterized as early-endosomal, APP positive, the other as recycling-endosomal, APP negative. We postulate that calsyntenin-1 acts as a general mediator of anterograde axonal transportation of endosomal vesicles. In this role, calsyntenin-1 may actively contribute to axonal growth and pathfinding in the developing as well as to the maintenance of neuronal polarity in the adult nervous system; further, it may actively contribute to the stabilization of APP during its anterograde axonal trajectory.
Keywords:β‐Amyloid precursor protein  Axonal transport  Calsyntenin/alcadein  Cell biology  Endosomes  Kinesin‐1
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