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A de novo GRIN1 Variant Associated With Myoclonus and Developmental Delay: From Molecular Mechanism to Rescue Pharmacology

N-Methyl-D-aspartate receptors (NMDARs) are highly expressed in brain and play important roles in neurodevelopment and various neuropathologic conditions. Here, we describe a new phenotype in an individual associated with a novel de novo deleterious variant in GRIN1 (c.1595C>A, p.Pro532His). The...

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Autores principales: Zhang, Jin, Tang, Weiting, Bhatia, Nidhi K., Xu, Yuchen, Paudyal, Nabina, Liu, Ding, Kim, Sukhan, Song, Rui, XiangWei, Wenshu, Shaulsky, Gil, Myers, Scott J., Dobyns, William, Jayaraman, Vasanthi, Traynelis, Stephen F., Yuan, Hongjie, Bozarth, Xiuhua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8369916/
https://www.ncbi.nlm.nih.gov/pubmed/34413877
http://dx.doi.org/10.3389/fgene.2021.694312
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author Zhang, Jin
Tang, Weiting
Bhatia, Nidhi K.
Xu, Yuchen
Paudyal, Nabina
Liu, Ding
Kim, Sukhan
Song, Rui
XiangWei, Wenshu
Shaulsky, Gil
Myers, Scott J.
Dobyns, William
Jayaraman, Vasanthi
Traynelis, Stephen F.
Yuan, Hongjie
Bozarth, Xiuhua
author_facet Zhang, Jin
Tang, Weiting
Bhatia, Nidhi K.
Xu, Yuchen
Paudyal, Nabina
Liu, Ding
Kim, Sukhan
Song, Rui
XiangWei, Wenshu
Shaulsky, Gil
Myers, Scott J.
Dobyns, William
Jayaraman, Vasanthi
Traynelis, Stephen F.
Yuan, Hongjie
Bozarth, Xiuhua
author_sort Zhang, Jin
collection PubMed
description N-Methyl-D-aspartate receptors (NMDARs) are highly expressed in brain and play important roles in neurodevelopment and various neuropathologic conditions. Here, we describe a new phenotype in an individual associated with a novel de novo deleterious variant in GRIN1 (c.1595C>A, p.Pro532His). The clinical phenotype is characterized with developmental encephalopathy, striking stimulus-sensitive myoclonus, and frontal lobe and frontal white matter hypoplasia, with no apparent seizures detected. NMDARs that contained the P532H within the glycine-binding domain of GluN1 with either the GluN2A or GluN2B subunits were evaluated for changes in their pharmacological and biophysical properties, which surprisingly revealed only modest changes in glycine potency but a significant decrease in glutamate potency, an increase in sensitivity to endogenous zinc inhibition, a decrease in response to maximally effective concentrations of agonists, a shortened synaptic-like response time course, a decreased channel open probability, and a reduced receptor cell surface expression. Molecule dynamics simulations suggested that the variant can lead to additional interactions across the dimer interface in the agonist-binding domains, resulting in a more open GluN2 agonist-binding domain cleft, which was also confirmed by single-molecule fluorescence resonance energy transfer measurements. Based on the functional deficits identified, several positive modulators were evaluated to explore potential rescue pharmacology.
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spelling pubmed-83699162021-08-18 A de novo GRIN1 Variant Associated With Myoclonus and Developmental Delay: From Molecular Mechanism to Rescue Pharmacology Zhang, Jin Tang, Weiting Bhatia, Nidhi K. Xu, Yuchen Paudyal, Nabina Liu, Ding Kim, Sukhan Song, Rui XiangWei, Wenshu Shaulsky, Gil Myers, Scott J. Dobyns, William Jayaraman, Vasanthi Traynelis, Stephen F. Yuan, Hongjie Bozarth, Xiuhua Front Genet Genetics N-Methyl-D-aspartate receptors (NMDARs) are highly expressed in brain and play important roles in neurodevelopment and various neuropathologic conditions. Here, we describe a new phenotype in an individual associated with a novel de novo deleterious variant in GRIN1 (c.1595C>A, p.Pro532His). The clinical phenotype is characterized with developmental encephalopathy, striking stimulus-sensitive myoclonus, and frontal lobe and frontal white matter hypoplasia, with no apparent seizures detected. NMDARs that contained the P532H within the glycine-binding domain of GluN1 with either the GluN2A or GluN2B subunits were evaluated for changes in their pharmacological and biophysical properties, which surprisingly revealed only modest changes in glycine potency but a significant decrease in glutamate potency, an increase in sensitivity to endogenous zinc inhibition, a decrease in response to maximally effective concentrations of agonists, a shortened synaptic-like response time course, a decreased channel open probability, and a reduced receptor cell surface expression. Molecule dynamics simulations suggested that the variant can lead to additional interactions across the dimer interface in the agonist-binding domains, resulting in a more open GluN2 agonist-binding domain cleft, which was also confirmed by single-molecule fluorescence resonance energy transfer measurements. Based on the functional deficits identified, several positive modulators were evaluated to explore potential rescue pharmacology. Frontiers Media S.A. 2021-08-03 /pmc/articles/PMC8369916/ /pubmed/34413877 http://dx.doi.org/10.3389/fgene.2021.694312 Text en Copyright © 2021 Zhang, Tang, Bhatia, Xu, Paudyal, Liu, Kim, Song, XiangWei, Shaulsky, Myers, Dobyns, Jayaraman, Traynelis, Yuan and Bozarth. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Genetics
Zhang, Jin
Tang, Weiting
Bhatia, Nidhi K.
Xu, Yuchen
Paudyal, Nabina
Liu, Ding
Kim, Sukhan
Song, Rui
XiangWei, Wenshu
Shaulsky, Gil
Myers, Scott J.
Dobyns, William
Jayaraman, Vasanthi
Traynelis, Stephen F.
Yuan, Hongjie
Bozarth, Xiuhua
A de novo GRIN1 Variant Associated With Myoclonus and Developmental Delay: From Molecular Mechanism to Rescue Pharmacology
title A de novo GRIN1 Variant Associated With Myoclonus and Developmental Delay: From Molecular Mechanism to Rescue Pharmacology
title_full A de novo GRIN1 Variant Associated With Myoclonus and Developmental Delay: From Molecular Mechanism to Rescue Pharmacology
title_fullStr A de novo GRIN1 Variant Associated With Myoclonus and Developmental Delay: From Molecular Mechanism to Rescue Pharmacology
title_full_unstemmed A de novo GRIN1 Variant Associated With Myoclonus and Developmental Delay: From Molecular Mechanism to Rescue Pharmacology
title_short A de novo GRIN1 Variant Associated With Myoclonus and Developmental Delay: From Molecular Mechanism to Rescue Pharmacology
title_sort de novo grin1 variant associated with myoclonus and developmental delay: from molecular mechanism to rescue pharmacology
topic Genetics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8369916/
https://www.ncbi.nlm.nih.gov/pubmed/34413877
http://dx.doi.org/10.3389/fgene.2021.694312
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