Amyloid precursor protein is an autonomous growth cone adhesion molecule engaged in contact guidance.

Amyloid precursor protein (APP), a transmembrane glycoprotein, is well known for its involvement in the pathogenesis of Alzheimer disease of the aging brain, but its normal function is unclear. APP is a prominent component of the adult as well as the developing brain. It is enriched in axonal growth...

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Main Authors: Lucas J Sosa, Jared Bergman, Adriana Estrada-Bernal, Thomas J Glorioso, John M Kittelson, Karl H Pfenninger
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3653867?pdf=render
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spelling doaj-ed8a44d9f4c64fc78631a205bece65fa2020-11-25T01:55:54ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-0185e6452110.1371/journal.pone.0064521Amyloid precursor protein is an autonomous growth cone adhesion molecule engaged in contact guidance.Lucas J SosaJared BergmanAdriana Estrada-BernalThomas J GloriosoJohn M KittelsonKarl H PfenningerAmyloid precursor protein (APP), a transmembrane glycoprotein, is well known for its involvement in the pathogenesis of Alzheimer disease of the aging brain, but its normal function is unclear. APP is a prominent component of the adult as well as the developing brain. It is enriched in axonal growth cones (GCs) and has been implicated in cell adhesion and motility. We tested the hypothesis that APP is an extracellular matrix adhesion molecule in experiments that isolated the function of APP from that of well-established adhesion molecules. To this end we plated wild-type, APP-, or β1-integrin (Itgb1)- misexpressing mouse hippocampal neurons on matrices of either laminin, recombinant L1, or synthetic peptides binding specifically to Itgb1 s or APP. We measured GC adhesion, initial axonal outgrowth, and substrate preference on alternating matrix stripes and made the following observations: Substrates of APP-binding peptide alone sustain neurite outgrowth; APP dosage controls GC adhesion to laminin and APP-binding peptide as well as axonal outgrowth in Itgb1- independent manner; and APP directs GCs in contact guidance assays. It follows that APP is an independently operating cell adhesion molecule that affects the GC's phenotype on APP-binding matrices including laminin, and that it is likely to affect axon pathfinding in vivo.http://europepmc.org/articles/PMC3653867?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Lucas J Sosa
Jared Bergman
Adriana Estrada-Bernal
Thomas J Glorioso
John M Kittelson
Karl H Pfenninger
spellingShingle Lucas J Sosa
Jared Bergman
Adriana Estrada-Bernal
Thomas J Glorioso
John M Kittelson
Karl H Pfenninger
Amyloid precursor protein is an autonomous growth cone adhesion molecule engaged in contact guidance.
PLoS ONE
author_facet Lucas J Sosa
Jared Bergman
Adriana Estrada-Bernal
Thomas J Glorioso
John M Kittelson
Karl H Pfenninger
author_sort Lucas J Sosa
title Amyloid precursor protein is an autonomous growth cone adhesion molecule engaged in contact guidance.
title_short Amyloid precursor protein is an autonomous growth cone adhesion molecule engaged in contact guidance.
title_full Amyloid precursor protein is an autonomous growth cone adhesion molecule engaged in contact guidance.
title_fullStr Amyloid precursor protein is an autonomous growth cone adhesion molecule engaged in contact guidance.
title_full_unstemmed Amyloid precursor protein is an autonomous growth cone adhesion molecule engaged in contact guidance.
title_sort amyloid precursor protein is an autonomous growth cone adhesion molecule engaged in contact guidance.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description Amyloid precursor protein (APP), a transmembrane glycoprotein, is well known for its involvement in the pathogenesis of Alzheimer disease of the aging brain, but its normal function is unclear. APP is a prominent component of the adult as well as the developing brain. It is enriched in axonal growth cones (GCs) and has been implicated in cell adhesion and motility. We tested the hypothesis that APP is an extracellular matrix adhesion molecule in experiments that isolated the function of APP from that of well-established adhesion molecules. To this end we plated wild-type, APP-, or β1-integrin (Itgb1)- misexpressing mouse hippocampal neurons on matrices of either laminin, recombinant L1, or synthetic peptides binding specifically to Itgb1 s or APP. We measured GC adhesion, initial axonal outgrowth, and substrate preference on alternating matrix stripes and made the following observations: Substrates of APP-binding peptide alone sustain neurite outgrowth; APP dosage controls GC adhesion to laminin and APP-binding peptide as well as axonal outgrowth in Itgb1- independent manner; and APP directs GCs in contact guidance assays. It follows that APP is an independently operating cell adhesion molecule that affects the GC's phenotype on APP-binding matrices including laminin, and that it is likely to affect axon pathfinding in vivo.
url http://europepmc.org/articles/PMC3653867?pdf=render
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