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Structural Mechanism for Modulation of Synaptic Neuroligin-Neurexin Signaling by MDGA Proteins

Neuroligin-neurexin (NL-NRX) complexes are fundamental synaptic organizers in the central nervous system. An accurate spatial and temporal control of NL-NRX signaling is crucial to balance excitatory and inhibitory neurotransmission, and perturbations are linked with neurodevelopmental and psychiatr...

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Autores principales: Elegheert, Jonathan, Cvetkovska, Vedrana, Clayton, Amber J., Heroven, Christina, Vennekens, Kristel M., Smukowski, Samuel N., Regan, Michael C., Jia, Wanyi, Smith, Alexandra C., Furukawa, Hiro, Savas, Jeffrey N., de Wit, Joris, Begbie, Jo, Craig, Ann Marie, Aricescu, A. Radu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5563082/
https://www.ncbi.nlm.nih.gov/pubmed/28817804
http://dx.doi.org/10.1016/j.neuron.2017.07.040
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author Elegheert, Jonathan
Cvetkovska, Vedrana
Clayton, Amber J.
Heroven, Christina
Vennekens, Kristel M.
Smukowski, Samuel N.
Regan, Michael C.
Jia, Wanyi
Smith, Alexandra C.
Furukawa, Hiro
Savas, Jeffrey N.
de Wit, Joris
Begbie, Jo
Craig, Ann Marie
Aricescu, A. Radu
author_facet Elegheert, Jonathan
Cvetkovska, Vedrana
Clayton, Amber J.
Heroven, Christina
Vennekens, Kristel M.
Smukowski, Samuel N.
Regan, Michael C.
Jia, Wanyi
Smith, Alexandra C.
Furukawa, Hiro
Savas, Jeffrey N.
de Wit, Joris
Begbie, Jo
Craig, Ann Marie
Aricescu, A. Radu
author_sort Elegheert, Jonathan
collection PubMed
description Neuroligin-neurexin (NL-NRX) complexes are fundamental synaptic organizers in the central nervous system. An accurate spatial and temporal control of NL-NRX signaling is crucial to balance excitatory and inhibitory neurotransmission, and perturbations are linked with neurodevelopmental and psychiatric disorders. MDGA proteins bind NLs and control their function and interaction with NRXs via unknown mechanisms. Here, we report crystal structures of MDGA1, the NL1-MDGA1 complex, and a spliced NL1 isoform. Two large, multi-domain MDGA molecules fold into rigid triangular structures, cradling a dimeric NL to prevent NRX binding. Structural analyses guided the discovery of a broad, splicing-modulated interaction network between MDGA and NL family members and helped rationalize the impact of autism-linked mutations. We demonstrate that expression levels largely determine whether MDGAs act selectively or suppress the synapse organizing function of multiple NLs. These results illustrate a potentially brain-wide regulatory mechanism for NL-NRX signaling modulation.
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spelling pubmed-55630822017-08-30 Structural Mechanism for Modulation of Synaptic Neuroligin-Neurexin Signaling by MDGA Proteins Elegheert, Jonathan Cvetkovska, Vedrana Clayton, Amber J. Heroven, Christina Vennekens, Kristel M. Smukowski, Samuel N. Regan, Michael C. Jia, Wanyi Smith, Alexandra C. Furukawa, Hiro Savas, Jeffrey N. de Wit, Joris Begbie, Jo Craig, Ann Marie Aricescu, A. Radu Neuron Article Neuroligin-neurexin (NL-NRX) complexes are fundamental synaptic organizers in the central nervous system. An accurate spatial and temporal control of NL-NRX signaling is crucial to balance excitatory and inhibitory neurotransmission, and perturbations are linked with neurodevelopmental and psychiatric disorders. MDGA proteins bind NLs and control their function and interaction with NRXs via unknown mechanisms. Here, we report crystal structures of MDGA1, the NL1-MDGA1 complex, and a spliced NL1 isoform. Two large, multi-domain MDGA molecules fold into rigid triangular structures, cradling a dimeric NL to prevent NRX binding. Structural analyses guided the discovery of a broad, splicing-modulated interaction network between MDGA and NL family members and helped rationalize the impact of autism-linked mutations. We demonstrate that expression levels largely determine whether MDGAs act selectively or suppress the synapse organizing function of multiple NLs. These results illustrate a potentially brain-wide regulatory mechanism for NL-NRX signaling modulation. Cell Press 2017-08-16 /pmc/articles/PMC5563082/ /pubmed/28817804 http://dx.doi.org/10.1016/j.neuron.2017.07.040 Text en © 2017 MRC Laboratory of Molecular Biology 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
Elegheert, Jonathan
Cvetkovska, Vedrana
Clayton, Amber J.
Heroven, Christina
Vennekens, Kristel M.
Smukowski, Samuel N.
Regan, Michael C.
Jia, Wanyi
Smith, Alexandra C.
Furukawa, Hiro
Savas, Jeffrey N.
de Wit, Joris
Begbie, Jo
Craig, Ann Marie
Aricescu, A. Radu
Structural Mechanism for Modulation of Synaptic Neuroligin-Neurexin Signaling by MDGA Proteins
title Structural Mechanism for Modulation of Synaptic Neuroligin-Neurexin Signaling by MDGA Proteins
title_full Structural Mechanism for Modulation of Synaptic Neuroligin-Neurexin Signaling by MDGA Proteins
title_fullStr Structural Mechanism for Modulation of Synaptic Neuroligin-Neurexin Signaling by MDGA Proteins
title_full_unstemmed Structural Mechanism for Modulation of Synaptic Neuroligin-Neurexin Signaling by MDGA Proteins
title_short Structural Mechanism for Modulation of Synaptic Neuroligin-Neurexin Signaling by MDGA Proteins
title_sort structural mechanism for modulation of synaptic neuroligin-neurexin signaling by mdga proteins
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5563082/
https://www.ncbi.nlm.nih.gov/pubmed/28817804
http://dx.doi.org/10.1016/j.neuron.2017.07.040
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