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Structural Basis of Teneurin-Latrophilin Interaction in Repulsive Guidance of Migrating Neurons

Teneurins are ancient metazoan cell adhesion receptors that control brain development and neuronal wiring in higher animals. The extracellular C terminus binds the adhesion GPCR Latrophilin, forming a trans-cellular complex with synaptogenic functions. However, Teneurins, Latrophilins, and FLRT prot...

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Autores principales: del Toro, Daniel, Carrasquero-Ordaz, Maria A., Chu, Amy, Ruff, Tobias, Shahin, Meriam, Jackson, Verity A., Chavent, Matthieu, Berbeira-Santana, Miguel, Seyit-Bremer, Goenuel, Brignani, Sara, Kaufmann, Rainer, Lowe, Edward, Klein, Rüdiger, Seiradake, Elena
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6978801/
https://www.ncbi.nlm.nih.gov/pubmed/31928845
http://dx.doi.org/10.1016/j.cell.2019.12.014
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author del Toro, Daniel
Carrasquero-Ordaz, Maria A.
Chu, Amy
Ruff, Tobias
Shahin, Meriam
Jackson, Verity A.
Chavent, Matthieu
Berbeira-Santana, Miguel
Seyit-Bremer, Goenuel
Brignani, Sara
Kaufmann, Rainer
Lowe, Edward
Klein, Rüdiger
Seiradake, Elena
author_facet del Toro, Daniel
Carrasquero-Ordaz, Maria A.
Chu, Amy
Ruff, Tobias
Shahin, Meriam
Jackson, Verity A.
Chavent, Matthieu
Berbeira-Santana, Miguel
Seyit-Bremer, Goenuel
Brignani, Sara
Kaufmann, Rainer
Lowe, Edward
Klein, Rüdiger
Seiradake, Elena
author_sort del Toro, Daniel
collection PubMed
description Teneurins are ancient metazoan cell adhesion receptors that control brain development and neuronal wiring in higher animals. The extracellular C terminus binds the adhesion GPCR Latrophilin, forming a trans-cellular complex with synaptogenic functions. However, Teneurins, Latrophilins, and FLRT proteins are also expressed during murine cortical cell migration at earlier developmental stages. Here, we present crystal structures of Teneurin-Latrophilin complexes that reveal how the lectin and olfactomedin domains of Latrophilin bind across a spiraling beta-barrel domain of Teneurin, the YD shell. We couple structure-based protein engineering to biophysical analysis, cell migration assays, and in utero electroporation experiments to probe the importance of the interaction in cortical neuron migration. We show that binding of Latrophilins to Teneurins and FLRTs directs the migration of neurons using a contact repulsion-dependent mechanism. The effect is observed with cell bodies and small neurites rather than their processes. The results exemplify how a structure-encoded synaptogenic protein complex is also used for repulsive cell guidance.
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spelling pubmed-69788012020-01-29 Structural Basis of Teneurin-Latrophilin Interaction in Repulsive Guidance of Migrating Neurons del Toro, Daniel Carrasquero-Ordaz, Maria A. Chu, Amy Ruff, Tobias Shahin, Meriam Jackson, Verity A. Chavent, Matthieu Berbeira-Santana, Miguel Seyit-Bremer, Goenuel Brignani, Sara Kaufmann, Rainer Lowe, Edward Klein, Rüdiger Seiradake, Elena Cell Article Teneurins are ancient metazoan cell adhesion receptors that control brain development and neuronal wiring in higher animals. The extracellular C terminus binds the adhesion GPCR Latrophilin, forming a trans-cellular complex with synaptogenic functions. However, Teneurins, Latrophilins, and FLRT proteins are also expressed during murine cortical cell migration at earlier developmental stages. Here, we present crystal structures of Teneurin-Latrophilin complexes that reveal how the lectin and olfactomedin domains of Latrophilin bind across a spiraling beta-barrel domain of Teneurin, the YD shell. We couple structure-based protein engineering to biophysical analysis, cell migration assays, and in utero electroporation experiments to probe the importance of the interaction in cortical neuron migration. We show that binding of Latrophilins to Teneurins and FLRTs directs the migration of neurons using a contact repulsion-dependent mechanism. The effect is observed with cell bodies and small neurites rather than their processes. The results exemplify how a structure-encoded synaptogenic protein complex is also used for repulsive cell guidance. Cell Press 2020-01-23 /pmc/articles/PMC6978801/ /pubmed/31928845 http://dx.doi.org/10.1016/j.cell.2019.12.014 Text en © 2020 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
del Toro, Daniel
Carrasquero-Ordaz, Maria A.
Chu, Amy
Ruff, Tobias
Shahin, Meriam
Jackson, Verity A.
Chavent, Matthieu
Berbeira-Santana, Miguel
Seyit-Bremer, Goenuel
Brignani, Sara
Kaufmann, Rainer
Lowe, Edward
Klein, Rüdiger
Seiradake, Elena
Structural Basis of Teneurin-Latrophilin Interaction in Repulsive Guidance of Migrating Neurons
title Structural Basis of Teneurin-Latrophilin Interaction in Repulsive Guidance of Migrating Neurons
title_full Structural Basis of Teneurin-Latrophilin Interaction in Repulsive Guidance of Migrating Neurons
title_fullStr Structural Basis of Teneurin-Latrophilin Interaction in Repulsive Guidance of Migrating Neurons
title_full_unstemmed Structural Basis of Teneurin-Latrophilin Interaction in Repulsive Guidance of Migrating Neurons
title_short Structural Basis of Teneurin-Latrophilin Interaction in Repulsive Guidance of Migrating Neurons
title_sort structural basis of teneurin-latrophilin interaction in repulsive guidance of migrating neurons
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6978801/
https://www.ncbi.nlm.nih.gov/pubmed/31928845
http://dx.doi.org/10.1016/j.cell.2019.12.014
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