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Structural Basis for Variant-Specific Neuroligin-Binding by α-Neurexin

Neurexins (Nrxs) are presynaptic membrane proteins with a single membrane-spanning domain that mediate asymmetric trans-synaptic cell adhesion by binding to their postsynaptic receptor neuroligins. α-Nrx has a large extracellular region comprised of multiple copies of laminin, neurexin, sex-hormone-...

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Autores principales: Tanaka, Hiroki, Nogi, Terukazu, Yasui, Norihisa, Iwasaki, Kenji, Takagi, Junichi
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3084293/
https://www.ncbi.nlm.nih.gov/pubmed/21552542
http://dx.doi.org/10.1371/journal.pone.0019411
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author Tanaka, Hiroki
Nogi, Terukazu
Yasui, Norihisa
Iwasaki, Kenji
Takagi, Junichi
author_facet Tanaka, Hiroki
Nogi, Terukazu
Yasui, Norihisa
Iwasaki, Kenji
Takagi, Junichi
author_sort Tanaka, Hiroki
collection PubMed
description Neurexins (Nrxs) are presynaptic membrane proteins with a single membrane-spanning domain that mediate asymmetric trans-synaptic cell adhesion by binding to their postsynaptic receptor neuroligins. α-Nrx has a large extracellular region comprised of multiple copies of laminin, neurexin, sex-hormone-binding globulin (LNS) domains and epidermal growth factor (EGF) modules, while that of β-Nrx has but a single LNS domain. It has long been known that the larger α-Nrx and the shorter β-Nrx show distinct binding behaviors toward different isoforms/variants of neuroligins, although the underlying mechanism has yet to be elucidated. Here, we describe the crystal structure of a fragment corresponding to the C-terminal one-third of the Nrx1α ectodomain, consisting of LNS5-EGF3-LNS6. The 2.3 Å-resolution structure revealed the presence of a domain configuration that was rigidified by inter-domain contacts, as opposed to the more common flexible “beads-on-a-string” arrangement. Although the neuroligin-binding site on the LNS6 domain was completely exposed, the location of the α-Nrx specific LNS5-EGF3 segment proved incompatible with the loop segment inserted in the B+ neuroligin variant, which explains the variant-specific neuroligin recognition capability observed in α-Nrx. This, combined with a low-resolution molecular envelope obtained by a single particle reconstruction performed on negatively stained full-length Nrx1α sample, allowed us to derive a structural model of the α-Nrx ectodomain. This model will help us understand not only how the large α-Nrx ectodomain is accommodated in the synaptic cleft, but also how the trans-synaptic adhesion mediated by α- and β-Nrxs could differentially affect synaptic structure and function.
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spelling pubmed-30842932011-05-06 Structural Basis for Variant-Specific Neuroligin-Binding by α-Neurexin Tanaka, Hiroki Nogi, Terukazu Yasui, Norihisa Iwasaki, Kenji Takagi, Junichi PLoS One Research Article Neurexins (Nrxs) are presynaptic membrane proteins with a single membrane-spanning domain that mediate asymmetric trans-synaptic cell adhesion by binding to their postsynaptic receptor neuroligins. α-Nrx has a large extracellular region comprised of multiple copies of laminin, neurexin, sex-hormone-binding globulin (LNS) domains and epidermal growth factor (EGF) modules, while that of β-Nrx has but a single LNS domain. It has long been known that the larger α-Nrx and the shorter β-Nrx show distinct binding behaviors toward different isoforms/variants of neuroligins, although the underlying mechanism has yet to be elucidated. Here, we describe the crystal structure of a fragment corresponding to the C-terminal one-third of the Nrx1α ectodomain, consisting of LNS5-EGF3-LNS6. The 2.3 Å-resolution structure revealed the presence of a domain configuration that was rigidified by inter-domain contacts, as opposed to the more common flexible “beads-on-a-string” arrangement. Although the neuroligin-binding site on the LNS6 domain was completely exposed, the location of the α-Nrx specific LNS5-EGF3 segment proved incompatible with the loop segment inserted in the B+ neuroligin variant, which explains the variant-specific neuroligin recognition capability observed in α-Nrx. This, combined with a low-resolution molecular envelope obtained by a single particle reconstruction performed on negatively stained full-length Nrx1α sample, allowed us to derive a structural model of the α-Nrx ectodomain. This model will help us understand not only how the large α-Nrx ectodomain is accommodated in the synaptic cleft, but also how the trans-synaptic adhesion mediated by α- and β-Nrxs could differentially affect synaptic structure and function. Public Library of Science 2011-04-28 /pmc/articles/PMC3084293/ /pubmed/21552542 http://dx.doi.org/10.1371/journal.pone.0019411 Text en Tanaka et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Tanaka, Hiroki
Nogi, Terukazu
Yasui, Norihisa
Iwasaki, Kenji
Takagi, Junichi
Structural Basis for Variant-Specific Neuroligin-Binding by α-Neurexin
title Structural Basis for Variant-Specific Neuroligin-Binding by α-Neurexin
title_full Structural Basis for Variant-Specific Neuroligin-Binding by α-Neurexin
title_fullStr Structural Basis for Variant-Specific Neuroligin-Binding by α-Neurexin
title_full_unstemmed Structural Basis for Variant-Specific Neuroligin-Binding by α-Neurexin
title_short Structural Basis for Variant-Specific Neuroligin-Binding by α-Neurexin
title_sort structural basis for variant-specific neuroligin-binding by α-neurexin
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3084293/
https://www.ncbi.nlm.nih.gov/pubmed/21552542
http://dx.doi.org/10.1371/journal.pone.0019411
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