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Biallelic variants in SLC38A3 encoding a glutamine transporter cause epileptic encephalopathy

Authors :
E El-Anany
Jennifer E. Posey
Shalini N. Jhangiani
S Guliyeva
Jill A. Rosenfeld
Khalid A. Fakhro
Vasiliki Karageorgou
A A Subhi
R. A. Gibbs
A Al-Maraghi
Sarah H. Elsea
Amal Alhashem
Henry Houlden
Charul Gijavanekar
M S Breilyn
Dana Marafi
Joseph G. Gleeson
Christian Beetz
E Sites
Hessa S. Alsaif
Vernon R. Sutton
Jill V. Hunter
Fowzan S. Alkuraya
M Zakkariah
C Gaba
James R. Lupski
Erin Torti
Davut Pehlivan
Z. Coban Akdemir
Matteo P. Ferla
S Duberstein
Haowei Du
Mohamed S. Abdel-Hamid
Ulviyya Guliyeva
M Sebastin
Jenny C. Taylor
E Danish
Reza Maroofian
A Haseeb
Rauan Kaiyrzhanov
Maha S. Zaki
Mohammed Al-Owain
S V Mullegama
Ning Liu
Jawid M Fatih
Tadahiro Mitani
Source :
Brain
Publication Year :
2021
Publisher :
Oxford University Press (OUP), 2021.

Abstract

The solute carrier (SLC) superfamily encompasses >400 transmembrane transporters involved in the exchange of amino acids, nutrients, ions, metals, neurotransmitters and metabolites across biological membranes. SLCs are highly expressed in the mammalian brain; defects in nearly 100 unique SLC-encoding genes (OMIM: https://www.omim.org) are associated with rare Mendelian disorders including developmental and epileptic encephalopathy and severe neurodevelopmental disorders. Exome sequencing and family-based rare variant analyses on a cohort with neurodevelopmental disorders identified two siblings with developmental and epileptic encephalopathy and a shared deleterious homozygous splicing variant in SLC38A3. The gene encodes SNAT3, a sodium-coupled neutral amino acid transporter and a principal transporter of the amino acids asparagine, histidine, and glutamine, the latter being the precursor for the neurotransmitters GABA and glutamate. Additional subjects with a similar developmental and epileptic encephalopathy phenotype and biallelic predicted-damaging SLC38A3 variants were ascertained through GeneMatcher and collaborations with research and clinical molecular diagnostic laboratories. Untargeted metabolomic analysis was performed to identify novel metabolic biomarkers. Ten individuals from seven unrelated families from six different countries with deleterious biallelic variants in SLC38A3 were identified. Global developmental delay, intellectual disability, hypotonia, and absent speech were common features while microcephaly, epilepsy, and visual impairment were present in the majority. Epilepsy was drug-resistant in half. Metabolomic analysis revealed perturbations of glutamate, histidine, and nitrogen metabolism in plasma, urine, and CSF of selected subjects, potentially representing biomarkers of disease. Our data support the contention that SLC38A3 is a novel disease gene for developmental and epileptic encephalopathy and illuminate the likely pathophysiology of the disease as perturbations in glutamine homeostasis.

Details

ISSN :
14602156 and 00068950
Volume :
145
Database :
OpenAIRE
Journal :
Brain
Accession number :
edsair.doi.dedup.....f130cdf3a22713ed899327cf8be36a86
Full Text :
https://doi.org/10.1093/brain/awab369