Cargando…

LAR-RPTP Clustering Is Modulated by Competitive Binding between Synaptic Adhesion Partners and Heparan Sulfate

The leukocyte common antigen-related receptor protein tyrosine phosphatases (LAR-RPTPs) are cellular receptors of heparan sulfate (HS) and chondroitin sulfate (CS) proteoglycans that direct axonal growth and neuronal regeneration. LAR-RPTPs are also synaptic adhesion molecules that form trans-synapt...

Descripción completa

Detalles Bibliográficos
Autores principales: Won, Seoung Youn, Kim, Cha Yeon, Kim, Doyoun, Ko, Jaewon, Um, Ji Won, Lee, Sung Bae, Buck, Matthias, Kim, Eunjoon, Heo, Won Do, Lee, Jie-Oh, Kim, Ho Min
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5645493/
https://www.ncbi.nlm.nih.gov/pubmed/29081732
http://dx.doi.org/10.3389/fnmol.2017.00327
_version_ 1783271903346032640
author Won, Seoung Youn
Kim, Cha Yeon
Kim, Doyoun
Ko, Jaewon
Um, Ji Won
Lee, Sung Bae
Buck, Matthias
Kim, Eunjoon
Heo, Won Do
Lee, Jie-Oh
Kim, Ho Min
author_facet Won, Seoung Youn
Kim, Cha Yeon
Kim, Doyoun
Ko, Jaewon
Um, Ji Won
Lee, Sung Bae
Buck, Matthias
Kim, Eunjoon
Heo, Won Do
Lee, Jie-Oh
Kim, Ho Min
author_sort Won, Seoung Youn
collection PubMed
description The leukocyte common antigen-related receptor protein tyrosine phosphatases (LAR-RPTPs) are cellular receptors of heparan sulfate (HS) and chondroitin sulfate (CS) proteoglycans that direct axonal growth and neuronal regeneration. LAR-RPTPs are also synaptic adhesion molecules that form trans-synaptic adhesion complexes by binding to various postsynaptic adhesion ligands, such as Slit- and Trk-like family of proteins (Slitrks), IL-1 receptor accessory protein-like 1 (IL1RAPL1), interleukin-1 receptor accessory protein (IL-1RAcP) and neurotrophin receptor tyrosine kinase C (TrkC), to regulate synaptogenesis. Here, we determined the crystal structure of the human LAR-RPTP/IL1RAPL1 complex and found that lateral interactions between neighboring LAR-RPTP/IL1RAPL1 complexes in crystal lattices are critical for the higher-order assembly and synaptogenic activity of these complexes. Moreover, we found that LAR-RPTP binding to the postsynaptic adhesion ligands, Slitrk3, IL1RAPL1 and IL-1RAcP, but not TrkC, induces reciprocal higher-order clustering of trans-synaptic adhesion complexes. Although LAR-RPTP clustering was induced by either HS or postsynaptic adhesion ligands, the dominant binding of HS to the LAR-RPTP was capable of dismantling pre-established LAR-RPTP-mediated trans-synaptic adhesion complexes. These findings collectively suggest that LAR-RPTP clustering for synaptogenesis is modulated by a complex synapse-organizing protein network.
format Online
Article
Text
id pubmed-5645493
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-56454932017-10-27 LAR-RPTP Clustering Is Modulated by Competitive Binding between Synaptic Adhesion Partners and Heparan Sulfate Won, Seoung Youn Kim, Cha Yeon Kim, Doyoun Ko, Jaewon Um, Ji Won Lee, Sung Bae Buck, Matthias Kim, Eunjoon Heo, Won Do Lee, Jie-Oh Kim, Ho Min Front Mol Neurosci Neuroscience The leukocyte common antigen-related receptor protein tyrosine phosphatases (LAR-RPTPs) are cellular receptors of heparan sulfate (HS) and chondroitin sulfate (CS) proteoglycans that direct axonal growth and neuronal regeneration. LAR-RPTPs are also synaptic adhesion molecules that form trans-synaptic adhesion complexes by binding to various postsynaptic adhesion ligands, such as Slit- and Trk-like family of proteins (Slitrks), IL-1 receptor accessory protein-like 1 (IL1RAPL1), interleukin-1 receptor accessory protein (IL-1RAcP) and neurotrophin receptor tyrosine kinase C (TrkC), to regulate synaptogenesis. Here, we determined the crystal structure of the human LAR-RPTP/IL1RAPL1 complex and found that lateral interactions between neighboring LAR-RPTP/IL1RAPL1 complexes in crystal lattices are critical for the higher-order assembly and synaptogenic activity of these complexes. Moreover, we found that LAR-RPTP binding to the postsynaptic adhesion ligands, Slitrk3, IL1RAPL1 and IL-1RAcP, but not TrkC, induces reciprocal higher-order clustering of trans-synaptic adhesion complexes. Although LAR-RPTP clustering was induced by either HS or postsynaptic adhesion ligands, the dominant binding of HS to the LAR-RPTP was capable of dismantling pre-established LAR-RPTP-mediated trans-synaptic adhesion complexes. These findings collectively suggest that LAR-RPTP clustering for synaptogenesis is modulated by a complex synapse-organizing protein network. Frontiers Media S.A. 2017-10-13 /pmc/articles/PMC5645493/ /pubmed/29081732 http://dx.doi.org/10.3389/fnmol.2017.00327 Text en Copyright © 2017 Won, Kim, Kim, Ko, Um, Lee, Buck, Kim, Heo, Lee and Kim. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Neuroscience
Won, Seoung Youn
Kim, Cha Yeon
Kim, Doyoun
Ko, Jaewon
Um, Ji Won
Lee, Sung Bae
Buck, Matthias
Kim, Eunjoon
Heo, Won Do
Lee, Jie-Oh
Kim, Ho Min
LAR-RPTP Clustering Is Modulated by Competitive Binding between Synaptic Adhesion Partners and Heparan Sulfate
title LAR-RPTP Clustering Is Modulated by Competitive Binding between Synaptic Adhesion Partners and Heparan Sulfate
title_full LAR-RPTP Clustering Is Modulated by Competitive Binding between Synaptic Adhesion Partners and Heparan Sulfate
title_fullStr LAR-RPTP Clustering Is Modulated by Competitive Binding between Synaptic Adhesion Partners and Heparan Sulfate
title_full_unstemmed LAR-RPTP Clustering Is Modulated by Competitive Binding between Synaptic Adhesion Partners and Heparan Sulfate
title_short LAR-RPTP Clustering Is Modulated by Competitive Binding between Synaptic Adhesion Partners and Heparan Sulfate
title_sort lar-rptp clustering is modulated by competitive binding between synaptic adhesion partners and heparan sulfate
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5645493/
https://www.ncbi.nlm.nih.gov/pubmed/29081732
http://dx.doi.org/10.3389/fnmol.2017.00327
work_keys_str_mv AT wonseoungyoun larrptpclusteringismodulatedbycompetitivebindingbetweensynapticadhesionpartnersandheparansulfate
AT kimchayeon larrptpclusteringismodulatedbycompetitivebindingbetweensynapticadhesionpartnersandheparansulfate
AT kimdoyoun larrptpclusteringismodulatedbycompetitivebindingbetweensynapticadhesionpartnersandheparansulfate
AT kojaewon larrptpclusteringismodulatedbycompetitivebindingbetweensynapticadhesionpartnersandheparansulfate
AT umjiwon larrptpclusteringismodulatedbycompetitivebindingbetweensynapticadhesionpartnersandheparansulfate
AT leesungbae larrptpclusteringismodulatedbycompetitivebindingbetweensynapticadhesionpartnersandheparansulfate
AT buckmatthias larrptpclusteringismodulatedbycompetitivebindingbetweensynapticadhesionpartnersandheparansulfate
AT kimeunjoon larrptpclusteringismodulatedbycompetitivebindingbetweensynapticadhesionpartnersandheparansulfate
AT heowondo larrptpclusteringismodulatedbycompetitivebindingbetweensynapticadhesionpartnersandheparansulfate
AT leejieoh larrptpclusteringismodulatedbycompetitivebindingbetweensynapticadhesionpartnersandheparansulfate
AT kimhomin larrptpclusteringismodulatedbycompetitivebindingbetweensynapticadhesionpartnersandheparansulfate