Cargando…

X-linked neonatal-onset epileptic encephalopathy associated with a gain-of-function variant p.R660T in GRIA3

The X-linked GRIA3 gene encodes the GLUA3 subunit of AMPA-type glutamate receptors. Pathogenic variants in this gene were previously reported in neurodevelopmental diseases, mostly in male patients but rarely in females. Here we report a de novo pathogenic missense variant in GRIA3 (c.1979G>C; p....

Descripción completa

Detalles Bibliográficos
Autores principales: Sun, Jia-Hui, Chen, Jiang, Ayala Valenzuela, Fernando Eduardo, Brown, Carolyn, Masser-Frye, Diane, Jones, Marilyn, Romero, Leslie Patron, Rinaldi, Berardo, Li, Wenhui Laura, Li, Qing-Qing, Wu, Dan, Gerard, Benedicte, Thorpe, Erin, Bayat, Allan, Shi, Yun Stone
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8259962/
https://www.ncbi.nlm.nih.gov/pubmed/34161333
http://dx.doi.org/10.1371/journal.pgen.1009608
_version_ 1783718743255285760
author Sun, Jia-Hui
Chen, Jiang
Ayala Valenzuela, Fernando Eduardo
Brown, Carolyn
Masser-Frye, Diane
Jones, Marilyn
Romero, Leslie Patron
Rinaldi, Berardo
Li, Wenhui Laura
Li, Qing-Qing
Wu, Dan
Gerard, Benedicte
Thorpe, Erin
Bayat, Allan
Shi, Yun Stone
author_facet Sun, Jia-Hui
Chen, Jiang
Ayala Valenzuela, Fernando Eduardo
Brown, Carolyn
Masser-Frye, Diane
Jones, Marilyn
Romero, Leslie Patron
Rinaldi, Berardo
Li, Wenhui Laura
Li, Qing-Qing
Wu, Dan
Gerard, Benedicte
Thorpe, Erin
Bayat, Allan
Shi, Yun Stone
author_sort Sun, Jia-Hui
collection PubMed
description The X-linked GRIA3 gene encodes the GLUA3 subunit of AMPA-type glutamate receptors. Pathogenic variants in this gene were previously reported in neurodevelopmental diseases, mostly in male patients but rarely in females. Here we report a de novo pathogenic missense variant in GRIA3 (c.1979G>C; p. R660T) identified in a 1-year-old female patient with severe epilepsy and global developmental delay. When exogenously expressed in human embryonic kidney (HEK) cells, GLUA3_R660T showed slower desensitization and deactivation kinetics compared to wildtype (wt) GLUA3 receptors. Substantial non-desensitized currents were observed with the mutant but not for wt GLUA3 with prolonged exposure to glutamate. When co-expressed with GLUA2, the decay kinetics were similarly slowed in GLUA2/A3_R660T with non-desensitized steady state currents. In cultured cerebellar granule neurons, miniature excitatory postsynaptic currents (mEPSCs) were significantly slower in R660T transfected cells than those expressing wt GLUA3. When overexpressed in hippocampal CA1 neurons by in utero electroporation, the evoked EPSCs and mEPSCs were slower in neurons expressing R660T mutant compared to those expressing wt GLUA3. Therefore our study provides functional evidence that a gain of function (GoF) variant in GRIA3 may cause epileptic encephalopathy and global developmental delay in a female subject by enhancing synaptic transmission.
format Online
Article
Text
id pubmed-8259962
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-82599622021-07-19 X-linked neonatal-onset epileptic encephalopathy associated with a gain-of-function variant p.R660T in GRIA3 Sun, Jia-Hui Chen, Jiang Ayala Valenzuela, Fernando Eduardo Brown, Carolyn Masser-Frye, Diane Jones, Marilyn Romero, Leslie Patron Rinaldi, Berardo Li, Wenhui Laura Li, Qing-Qing Wu, Dan Gerard, Benedicte Thorpe, Erin Bayat, Allan Shi, Yun Stone PLoS Genet Research Article The X-linked GRIA3 gene encodes the GLUA3 subunit of AMPA-type glutamate receptors. Pathogenic variants in this gene were previously reported in neurodevelopmental diseases, mostly in male patients but rarely in females. Here we report a de novo pathogenic missense variant in GRIA3 (c.1979G>C; p. R660T) identified in a 1-year-old female patient with severe epilepsy and global developmental delay. When exogenously expressed in human embryonic kidney (HEK) cells, GLUA3_R660T showed slower desensitization and deactivation kinetics compared to wildtype (wt) GLUA3 receptors. Substantial non-desensitized currents were observed with the mutant but not for wt GLUA3 with prolonged exposure to glutamate. When co-expressed with GLUA2, the decay kinetics were similarly slowed in GLUA2/A3_R660T with non-desensitized steady state currents. In cultured cerebellar granule neurons, miniature excitatory postsynaptic currents (mEPSCs) were significantly slower in R660T transfected cells than those expressing wt GLUA3. When overexpressed in hippocampal CA1 neurons by in utero electroporation, the evoked EPSCs and mEPSCs were slower in neurons expressing R660T mutant compared to those expressing wt GLUA3. Therefore our study provides functional evidence that a gain of function (GoF) variant in GRIA3 may cause epileptic encephalopathy and global developmental delay in a female subject by enhancing synaptic transmission. Public Library of Science 2021-06-23 /pmc/articles/PMC8259962/ /pubmed/34161333 http://dx.doi.org/10.1371/journal.pgen.1009608 Text en © 2021 Sun et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Sun, Jia-Hui
Chen, Jiang
Ayala Valenzuela, Fernando Eduardo
Brown, Carolyn
Masser-Frye, Diane
Jones, Marilyn
Romero, Leslie Patron
Rinaldi, Berardo
Li, Wenhui Laura
Li, Qing-Qing
Wu, Dan
Gerard, Benedicte
Thorpe, Erin
Bayat, Allan
Shi, Yun Stone
X-linked neonatal-onset epileptic encephalopathy associated with a gain-of-function variant p.R660T in GRIA3
title X-linked neonatal-onset epileptic encephalopathy associated with a gain-of-function variant p.R660T in GRIA3
title_full X-linked neonatal-onset epileptic encephalopathy associated with a gain-of-function variant p.R660T in GRIA3
title_fullStr X-linked neonatal-onset epileptic encephalopathy associated with a gain-of-function variant p.R660T in GRIA3
title_full_unstemmed X-linked neonatal-onset epileptic encephalopathy associated with a gain-of-function variant p.R660T in GRIA3
title_short X-linked neonatal-onset epileptic encephalopathy associated with a gain-of-function variant p.R660T in GRIA3
title_sort x-linked neonatal-onset epileptic encephalopathy associated with a gain-of-function variant p.r660t in gria3
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8259962/
https://www.ncbi.nlm.nih.gov/pubmed/34161333
http://dx.doi.org/10.1371/journal.pgen.1009608
work_keys_str_mv AT sunjiahui xlinkedneonatalonsetepilepticencephalopathyassociatedwithagainoffunctionvariantpr660tingria3
AT chenjiang xlinkedneonatalonsetepilepticencephalopathyassociatedwithagainoffunctionvariantpr660tingria3
AT ayalavalenzuelafernandoeduardo xlinkedneonatalonsetepilepticencephalopathyassociatedwithagainoffunctionvariantpr660tingria3
AT browncarolyn xlinkedneonatalonsetepilepticencephalopathyassociatedwithagainoffunctionvariantpr660tingria3
AT masserfryediane xlinkedneonatalonsetepilepticencephalopathyassociatedwithagainoffunctionvariantpr660tingria3
AT jonesmarilyn xlinkedneonatalonsetepilepticencephalopathyassociatedwithagainoffunctionvariantpr660tingria3
AT romerolesliepatron xlinkedneonatalonsetepilepticencephalopathyassociatedwithagainoffunctionvariantpr660tingria3
AT rinaldiberardo xlinkedneonatalonsetepilepticencephalopathyassociatedwithagainoffunctionvariantpr660tingria3
AT liwenhuilaura xlinkedneonatalonsetepilepticencephalopathyassociatedwithagainoffunctionvariantpr660tingria3
AT liqingqing xlinkedneonatalonsetepilepticencephalopathyassociatedwithagainoffunctionvariantpr660tingria3
AT wudan xlinkedneonatalonsetepilepticencephalopathyassociatedwithagainoffunctionvariantpr660tingria3
AT gerardbenedicte xlinkedneonatalonsetepilepticencephalopathyassociatedwithagainoffunctionvariantpr660tingria3
AT thorpeerin xlinkedneonatalonsetepilepticencephalopathyassociatedwithagainoffunctionvariantpr660tingria3
AT bayatallan xlinkedneonatalonsetepilepticencephalopathyassociatedwithagainoffunctionvariantpr660tingria3
AT shiyunstone xlinkedneonatalonsetepilepticencephalopathyassociatedwithagainoffunctionvariantpr660tingria3