De Novo Missense Variants in SLC32A1 Cause a Developmental and Epileptic Encephalopathy Due to Impaired GABAergic Neurotransmission

被引:10
|
作者
Platzer, Konrad [1 ]
Sticht, Heinrich [2 ]
Bupp, Caleb [3 ]
Ganapathi, Mythily [4 ]
Pereira, Elaine M. [5 ]
Le Guyader, Gwenael [6 ]
Bilan, Frederic [6 ,7 ]
Henderson, Lindsay B. [8 ]
Lemke, Johannes R. [1 ,9 ]
Taschenberger, Holger [10 ]
Brose, Nils [10 ]
Abou Jamra, Rami [1 ]
Wojcik, Sonja M. [10 ]
机构
[1] Univ Leipzig, Inst Human Genet, Med Ctr, Leipzig, Germany
[2] Friedrich Alexander Univ Erlangen Nurnberg, Inst Biochem, Erlangen, Germany
[3] Spectrum Hlth Med Genet, Grand Rapids, MI USA
[4] Columbia Univ, Dept Pathol & Cell Biol, Med Ctr, New York, NY USA
[5] Columbia Univ, Dept Pediat, Irving Med Ctr, New York, NY USA
[6] Poitiers Univ Hosp Ctr, Dept Genet, Poitiers, France
[7] Univ Poitiers, Lab Expt & Clin Neurosci LNEC, INSERM, U1084, Poitiers, France
[8] GeneDx, Gaithersburg, MD USA
[9] Univ Leipzig, Ctr Rare Dis, Med Ctr, Leipzig, Germany
[10] Max Planck Inst Multidisciplinary Sci, Dept Mol Neurobiol, Gottingen, Germany
关键词
VESICULAR GABA TRANSPORTER; FEBRILE SEIZURES; FAMILIES SLC32; RELEASE; PATHOGENICITY; TRANSMISSION; EXPRESSION; CA2+;
D O I
10.1002/ana.26485
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Objective Rare inherited missense variants in SLC32A1, the gene that encodes the vesicular gamma-aminobutyric acid (GABA) transporter, have recently been shown to cause genetic epilepsy with febrile seizures plus. We aimed to clarify if de novo missense variants in SLC32A1 can also cause epilepsy with impaired neurodevelopment. Methods Using exome sequencing, we identified four individuals with a developmental and epileptic encephalopathy and de novo missense variants in SLC32A1. To assess causality, we performed functional evaluation of the identified variants in a murine neuronal cell culture model. Results The main phenotype comprises moderate-to-severe intellectual disability, infantile-onset epilepsy within the first 18 months of life, and a choreiform, dystonic, or dyskinetic movement disorder. In silico modeling and functional analyses reveal that three of these variants, which are located in helices that line the putative GABA transport pathway, result in reduced quantal size, consistent with impaired filling of synaptic vesicles with GABA. The fourth variant, located in the vesicular gamma-aminobutyric acid N-terminus, does not affect quantal size, but increases presynaptic release probability, leading to more severe synaptic depression during high-frequency stimulation. Thus, variants in vesicular gamma-aminobutyric acid can impair GABAergic neurotransmission through at least two mechanisms, by affecting synaptic vesicle filling and by altering synaptic short-term plasticity. Interpretation This work establishes de novo missense variants in SLC32A1 as a novel cause of a developmental and epileptic encephalopathy. Summary for Social Media If Published @platzer_k @lemke_johannes @RamiJamra @Nirgalito @GeneDx The SLC family 32 Member 1 (SLC32A1) is the only protein identified to date, that loads gamma-aminobutyric acid (GABA) and glycine into synaptic vesicles, and is therefore also known as the vesicular GABA transporter (VGAT) or vesicular inhibitory amino acid transporter (VIAAT). Rare inherited missense variants in SLC32A1, the gene that encodes VGAT/vesicular inhibitory amino acid transporter, have recently been shown to cause genetic epilepsy with febrile seizures plus. We aimed to clarify if de novo missense variants in SLC32A1 can also cause epilepsy with impaired neurodevelopment. We report on four individuals with de novo missense variants in SLC32A1 and a developmental and epileptic encephalopathy with infantile onset epilepsy. We establish causality of the variants via in silico modeling and their functional evaluation in a murine neuronal cell culture model. SLC32A1 variants represent a novel genetic etiology in neurodevelopmental disorders with epilepsy and a new GABA-related disease mechanism. ANN NEUROL 2022
引用
收藏
页码:958 / 973
页数:16
相关论文
共 50 条
  • [31] A novel de novo GABRA2 gene missense variant causing developmental epileptic encephalopathy in a Chinese patient
    Yang, Li
    Wan, Xingyu
    Hua, Ran
    Jiang, Junhong
    Wang, Baotian
    Tao, Rui
    Wu, De
    ANNALS OF CLINICAL AND TRANSLATIONAL NEUROLOGY, 2025, 12 (01): : 137 - 148
  • [32] De novo truncating variants in the intronless IRF2BPL gene are responsible for developmental epileptic encephalopathy
    Mau-Them, F. Tran
    Vitobello, A.
    Guibaud, L.
    Duplomb, L.
    Keren, B.
    Lindstrom, K.
    Marey, I.
    Mochel, F.
    van den Boogaard, M.
    Oegema, R.
    Nava, C.
    Masurel, A.
    Jouan, T.
    Jansen, F.
    Au, M.
    Chen, A.
    Cho, M.
    Duffourd, Y.
    Dickson, P.
    Moin, V.
    Begemann, A.
    Zweier, M.
    Zieba, B.
    Schmitt-Mechelke, T.
    van Gassen, K.
    Nelson, S.
    Graham, J.
    Friedman, J.
    Faivre, L.
    Ebstein, F.
    Lin, H.
    Robinet, C. Thauvin
    EUROPEAN JOURNAL OF HUMAN GENETICS, 2019, 27 : 220 - 221
  • [33] Progressive Ataxia due to de novo Missense Variants in the CACNA1A Gene
    Zhu, Chen-Hao
    Yu, Jin-Yang
    Ma, Yin
    Dong, Yi
    Wu, Zhi-Ying
    CEREBELLUM, 2024, 23 (05): : 2197 - 2204
  • [34] De Novo Missense Variants in TRAF7 Cause Developmental Delay, Congenital Anomalies, and Dysmorphic Features
    Tokita, Mari J.
    Chen, Chun-An
    Chitayat, David
    Macnamara, Ellen
    Rosenfeld, Jill A.
    Hanchard, Neil
    Lewis, Andrea M.
    Brown, Chester W.
    Marom, Ronit
    Shao, Yunru
    Novacic, Danica
    Wolfe, Lynne
    Wahl, Colleen
    Tifft, Cynthia J.
    Toro, Camilo
    Bernstein, Jonathan A.
    Hale, Caitlin L.
    Silver, Julia
    Hudgins, Louanne
    Ananth, Amitha
    Hanson-Kahn, Andrea
    Shuster, Shirley
    Magoulas, Pilar L.
    Patel, Vipulkumar N.
    Zhu, Wenmiao
    Chen, Stella M.
    Jiang, Yanjun
    Liu, Pengfei
    Eng, Christine M.
    Batkovskyte, Dominyka
    di Ronza, Alberto
    Sardiello, Marco
    Lee, Brendan H.
    Schaaf, Christian P.
    Yang, Yaping
    Wang, Xia
    AMERICAN JOURNAL OF HUMAN GENETICS, 2018, 103 (01) : 154 - 162
  • [35] De novo missense variant in GRIA2 in a patient with global developmental delay, autism spectrum disorder, and epileptic encephalopathy
    Latsko, Maeson S.
    Koboldt, Daniel C.
    Franklin, Samuel J.
    Hickey, Scott E.
    Williamson, Rachel K.
    Garner, Shannon
    Ostendorf, Adam P.
    Lee, Kristy
    White, Peter
    Wilson, Richard K.
    COLD SPRING HARBOR MOLECULAR CASE STUDIES, 2022, 8 (04):
  • [36] Developmental and epileptic encephalopathy in a young Italian woman with a de novo missense variant in the CLCN4 gene: A case report
    Rossi, Jessica
    Russo, Marco
    Gobbi, Giuseppe
    Terracciano, Alessandra
    Zuntini, Roberta
    Caraffi, Stefano Giuseppe
    Novelli, Antonio
    Garavelli, Livia
    Valzania, Franco
    Rizzi, Romana
    BRAIN & DEVELOPMENT, 2023, 45 (08): : 445 - 450
  • [37] De novo SCN8A and inherited rare CACNA1H variants associated with severe developmental and epileptic encephalopathy
    Robin N. Stringer
    Bohumila Jurkovicova-Tarabova
    Ivana A. Souza
    Judy Ibrahim
    Tomas Vacik
    Waseem Mahmoud Fathalla
    Jozef Hertecant
    Gerald W. Zamponi
    Lubica Lacinova
    Norbert Weiss
    Molecular Brain, 14
  • [38] Re-annotation of 191 developmental and epileptic encephalopathy-associated genes unmasks de novo variants in SCN1A
    Steward, Charles A.
    Roovers, Jolien
    Suner, Marie-Marthe
    Gonzalez, Jose M.
    Uszczynska-Ratajczak, Barbara
    Pervouchine, Dmitri
    Fitzgerald, Stephen
    Viola, Margarida
    Stamberger, Hannah
    Hamdan, Fadi F.
    Ceulemans, Berten
    Leroy, Patricia
    Nava, Caroline
    Lepine, Anne
    Tapanari, Electra
    Keiller, Don
    Abbs, Stephen
    Sanchis-Juan, Alba
    Grozeva, Detelina
    Rogers, Anthony S.
    Diekhans, Mark
    Guigo, Roderic
    Petryszak, Robert
    Minassian, Berge A.
    Cavalleri, Gianpiero
    Vitsios, Dimitrios
    Petrovski, Slave
    Harrow, Jennifer
    Flicek, Paul
    Raymond, F. Lucy
    Lench, Nicholas J.
    De Jonghe, Peter
    Mudge, Jonathan M.
    Weckhuysen, Sarah
    Sisodiya, Sanjay M.
    Frankish, Adam
    NPJ GENOMIC MEDICINE, 2019, 4 (1)
  • [39] De novo SCN8A and inherited rare CACNA1H variants associated with severe developmental and epileptic encephalopathy
    Stringer, Robin N.
    Jurkovicova-Tarabova, Bohumila
    Souza, Ivana A.
    Ibrahim, Judy
    Vacik, Tomas
    Fathalla, Waseem Mahmoud
    Hertecant, Jozef
    Zamponi, Gerald W.
    Lacinova, Lubica
    Weiss, Norbert
    MOLECULAR BRAIN, 2021, 14 (01)
  • [40] Re-annotation of 191 developmental and epileptic encephalopathy-associated genes unmasks de novo variants in SCN1A
    Charles A. Steward
    Jolien Roovers
    Marie-Marthe Suner
    Jose M. Gonzalez
    Barbara Uszczynska-Ratajczak
    Dmitri Pervouchine
    Stephen Fitzgerald
    Margarida Viola
    Hannah Stamberger
    Fadi F. Hamdan
    Berten Ceulemans
    Patricia Leroy
    Caroline Nava
    Anne Lepine
    Electra Tapanari
    Don Keiller
    Stephen Abbs
    Alba Sanchis-Juan
    Detelina Grozeva
    Anthony S. Rogers
    Mark Diekhans
    Roderic Guigó
    Robert Petryszak
    Berge A. Minassian
    Gianpiero Cavalleri
    Dimitrios Vitsios
    Slavé Petrovski
    Jennifer Harrow
    Paul Flicek
    F. Lucy Raymond
    Nicholas J. Lench
    Peter De Jonghe
    Jonathan M. Mudge
    Sarah Weckhuysen
    Sanjay M. Sisodiya
    Adam Frankish
    npj Genomic Medicine, 4