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De novo GRIN variants in NMDA receptor M2 channel pore‐forming loop are associated with neurological diseases.

Authors :
Li, Jia
Zhang, Jin
Tang, Weiting
Mizu, Ruth K.
Kusumoto, Hirofumi
XiangWei, Wenshu
Xu, Yuchen
Chen, Wenjuan
Amin, Johansen B.
Hu, Chun
Kannan, Varun
Keller, Stephanie R.
Wilcox, William R.
Lemke, Johannes R.
Myers, Scott J.
Swanger, Sharon A.
Wollmuth, Lonnie P.
Petrovski, Slavé
Traynelis, Stephen F.
Yuan, Hongjie
Source :
Human Mutation; Dec2019, Vol. 40 Issue 12, p2393-2413, 21p
Publication Year :
2019

Abstract

N‐methyl‐D‐aspartate receptors (NMDARs) mediate slow excitatory postsynaptic transmission in the central nervous system, thereby exerting a critical role in neuronal development and brain function. Rare genetic variants in the GRIN genes encoding NMDAR subunits segregated with neurological disorders. Here, we summarize the clinical presentations for 18 patients harboring 12 de novo missense variants in GRIN1, GRIN2A, and GRIN2B that alter residues in the M2 re‐entrant loop, a region that lines the pore and is intolerant to missense variation. These de novo variants were identified in children with a set of neurological and neuropsychiatric conditions. Evaluation of the receptor cell surface expression, pharmacological properties, and biophysical characteristics show that these variants can have modest changes in agonist potency, proton inhibition, and surface expression. However, voltage‐dependent magnesium inhibition is significantly reduced in all variants. The NMDARs hosting a single copy of a mutant subunit showed a dominant reduction in magnesium inhibition for some variants. These variant NMDARs also show reduced calcium permeability and single‐channel conductance, as well as altered open probability. The data suggest that M2 missense variants increase NMDAR charge transfer in addition to varied and complex influences on NMDAR functional properties, which may underlie the patients' phenotypes. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
10597794
Volume :
40
Issue :
12
Database :
Complementary Index
Journal :
Human Mutation
Publication Type :
Academic Journal
Accession number :
139826123
Full Text :
https://doi.org/10.1002/humu.23895