Cargando…

Molecular and structural basis of olfactory sensory neuron axon coalescence by Kirrel receptors

Projections from sensory neurons of olfactory systems coalesce into glomeruli in the brain. The Kirrel receptors are believed to homodimerize via their ectodomains and help separate sensory neuron axons into Kirrel2- or Kirrel3-expressing glomeruli. Here, we present the crystal structures of homodim...

Descripción completa

Detalles Bibliográficos
Autores principales: Wang, Jing, Vaddadi, Neelima, Pak, Joseph S., Park, Yeonwoo, Quilez, Sabrina, Roman, Christina A., Dumontier, Emilie, Thornton, Joseph W., Cloutier, Jean-François, Özkan, Engin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8628261/
https://www.ncbi.nlm.nih.gov/pubmed/34731636
http://dx.doi.org/10.1016/j.celrep.2021.109940
_version_ 1784606980163239936
author Wang, Jing
Vaddadi, Neelima
Pak, Joseph S.
Park, Yeonwoo
Quilez, Sabrina
Roman, Christina A.
Dumontier, Emilie
Thornton, Joseph W.
Cloutier, Jean-François
Özkan, Engin
author_facet Wang, Jing
Vaddadi, Neelima
Pak, Joseph S.
Park, Yeonwoo
Quilez, Sabrina
Roman, Christina A.
Dumontier, Emilie
Thornton, Joseph W.
Cloutier, Jean-François
Özkan, Engin
author_sort Wang, Jing
collection PubMed
description Projections from sensory neurons of olfactory systems coalesce into glomeruli in the brain. The Kirrel receptors are believed to homodimerize via their ectodomains and help separate sensory neuron axons into Kirrel2- or Kirrel3-expressing glomeruli. Here, we present the crystal structures of homodimeric Kirrel receptors and show that the closely related Kirrel2 and Kirrel3 have evolved specific sets of polar and hydrophobic interactions, respectively, disallowing heterodimerization while preserving homodimerization, likely resulting in proper segregation and coalescence of Kirrel-expressing axons into glomeruli. We show that the dimerization interface at the N-terminal immunoglobulin (IG) domains is necessary and sufficient to create homodimers and fail to find evidence for a secondary interaction site in Kirrel ectodomains. Furthermore, we show that abolishing dimerization of Kirrel3 in vivo leads to improper formation of glomeruli in the mouse accessory olfactory bulb as observed in Kirrel3(−/−) animals. Our results provide evidence for Kirrel3 homodimerization controlling axonal coalescence.
format Online
Article
Text
id pubmed-8628261
institution National Center for Biotechnology Information
language English
publishDate 2021
record_format MEDLINE/PubMed
spelling pubmed-86282612021-11-29 Molecular and structural basis of olfactory sensory neuron axon coalescence by Kirrel receptors Wang, Jing Vaddadi, Neelima Pak, Joseph S. Park, Yeonwoo Quilez, Sabrina Roman, Christina A. Dumontier, Emilie Thornton, Joseph W. Cloutier, Jean-François Özkan, Engin Cell Rep Article Projections from sensory neurons of olfactory systems coalesce into glomeruli in the brain. The Kirrel receptors are believed to homodimerize via their ectodomains and help separate sensory neuron axons into Kirrel2- or Kirrel3-expressing glomeruli. Here, we present the crystal structures of homodimeric Kirrel receptors and show that the closely related Kirrel2 and Kirrel3 have evolved specific sets of polar and hydrophobic interactions, respectively, disallowing heterodimerization while preserving homodimerization, likely resulting in proper segregation and coalescence of Kirrel-expressing axons into glomeruli. We show that the dimerization interface at the N-terminal immunoglobulin (IG) domains is necessary and sufficient to create homodimers and fail to find evidence for a secondary interaction site in Kirrel ectodomains. Furthermore, we show that abolishing dimerization of Kirrel3 in vivo leads to improper formation of glomeruli in the mouse accessory olfactory bulb as observed in Kirrel3(−/−) animals. Our results provide evidence for Kirrel3 homodimerization controlling axonal coalescence. 2021-11-02 /pmc/articles/PMC8628261/ /pubmed/34731636 http://dx.doi.org/10.1016/j.celrep.2021.109940 Text en https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license
spellingShingle Article
Wang, Jing
Vaddadi, Neelima
Pak, Joseph S.
Park, Yeonwoo
Quilez, Sabrina
Roman, Christina A.
Dumontier, Emilie
Thornton, Joseph W.
Cloutier, Jean-François
Özkan, Engin
Molecular and structural basis of olfactory sensory neuron axon coalescence by Kirrel receptors
title Molecular and structural basis of olfactory sensory neuron axon coalescence by Kirrel receptors
title_full Molecular and structural basis of olfactory sensory neuron axon coalescence by Kirrel receptors
title_fullStr Molecular and structural basis of olfactory sensory neuron axon coalescence by Kirrel receptors
title_full_unstemmed Molecular and structural basis of olfactory sensory neuron axon coalescence by Kirrel receptors
title_short Molecular and structural basis of olfactory sensory neuron axon coalescence by Kirrel receptors
title_sort molecular and structural basis of olfactory sensory neuron axon coalescence by kirrel receptors
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8628261/
https://www.ncbi.nlm.nih.gov/pubmed/34731636
http://dx.doi.org/10.1016/j.celrep.2021.109940
work_keys_str_mv AT wangjing molecularandstructuralbasisofolfactorysensoryneuronaxoncoalescencebykirrelreceptors
AT vaddadineelima molecularandstructuralbasisofolfactorysensoryneuronaxoncoalescencebykirrelreceptors
AT pakjosephs molecularandstructuralbasisofolfactorysensoryneuronaxoncoalescencebykirrelreceptors
AT parkyeonwoo molecularandstructuralbasisofolfactorysensoryneuronaxoncoalescencebykirrelreceptors
AT quilezsabrina molecularandstructuralbasisofolfactorysensoryneuronaxoncoalescencebykirrelreceptors
AT romanchristinaa molecularandstructuralbasisofolfactorysensoryneuronaxoncoalescencebykirrelreceptors
AT dumontieremilie molecularandstructuralbasisofolfactorysensoryneuronaxoncoalescencebykirrelreceptors
AT thorntonjosephw molecularandstructuralbasisofolfactorysensoryneuronaxoncoalescencebykirrelreceptors
AT cloutierjeanfrancois molecularandstructuralbasisofolfactorysensoryneuronaxoncoalescencebykirrelreceptors
AT ozkanengin molecularandstructuralbasisofolfactorysensoryneuronaxoncoalescencebykirrelreceptors