Pathogenic UNC13A variants cause a neurodevelopmental syndrome by impairing synaptic function.

dc.contributor.author

Asadollahi, Reza

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Ahmad, Aisha

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Boonsawat, Paranchai

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Shahanoor Hinzen, Jasmine

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Lohse, Mareike

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Bouazza-Arostegui, Boris

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Sun, Siqi

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Utesch, Tillmann

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Sommer, Jonas D

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Ilic, Dragana

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Padmanarayana, Murugesh

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Fischermanns, Kati

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Ranjan, Mrinalini

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Boll, Moritz

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Ka, Chandran

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Piton, Amélie

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Mattioli, Francesca

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Isidor, Bertrand

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Õunap, Katrin

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Reinson, Karit

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Wojcik, Monica H

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Marshall, Christian R

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Mercimek-Andrews, Saadet

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Matsumoto, Naomichi

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Miyake, Noriko

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Stephan, Bruno de Oliveira

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Honjo, Rachel Sayuri

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Bertola, Debora R

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Kim, Chong Ae

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Yusupov, Roman

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Mefford, Heather C

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Christodoulou, John

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Lee, Joy

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Heath, Oliver

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Brown, Natasha J

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Baker, Naomi

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Stark, Zornitza

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Delatycki, Martin

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Lake, Nicole J

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Zeidler, Shimriet

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Zuurbier, Linda

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Maas, Saskia M

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de Kruiff, Chris C

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Rajabi, Farrah

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Rodan, Lance H

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Coury, Stephanie A

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Platzer, Konrad

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Oppermann, Henry

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Abou Jamra, Rami

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Beblo, Skadi

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Maxton, Caroline

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Śmigiel, Robert

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Underhill, Hunter

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Dubbs, Holly

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Rosen, Alyssa

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Helbig, Katherine L

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Helbig, Ingo

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Ruggiero, Sarah McKeown

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Fitzgerald, Mark P

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Kraemer, Dennis

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Prada, Carlos E

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Tenney, Jeffrey

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Jayakar, Parul

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Redon, Sylvia

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Lefranc, Jérémie

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Uguen, Kevin

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Race, Simone

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Efthymiou, Stephanie

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Maroofian, Reza

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Houlden, Henry

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Coppens, Sandra

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Deconinck, Nicolas

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Ashokkumar, Balasubramaniem

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Varalakshmi, Perumal

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Gowda K, Vykunta Raju

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Eghbal, Fatemeh

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Ghayoor Karimiani, Ehsan

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Heidari, Morteza

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Neidhardt, John

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Owczarek-Lipska, Marta

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Korenke, G Christoph

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Bamshad, Michael J

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Campeau, Philippe M

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Lehman, Anna

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Hendon, Laura G

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Wentzensen, Ingrid M

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Monaghan, Kristin G

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Chen, Yanmin

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Szuto, Anna

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Cohn, Ronald D

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Au, Ping Yee Billie

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Hübner, Christoph

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Boschann, Felix

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Manickam, Kandamurugu

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Koboldt, Daniel C

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Rad, Aboulfazl

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Oprea, Gabriela

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Bachman, Kristine K

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Seeley, Andrea H

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Agolini, Emanuele

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Terracciano, Alessandra

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Carmelo, Piscopo

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Bupp, Caleb

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Grysko, Bethany

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Rein-Rothschild, Annick

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Ben Zeev, Bruria

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Margolin, Amy

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Morrison, Jennifer

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Dagli, Aditi

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Stolerman, Elliot

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Louie, Raymond J

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Washington, Camerun

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Stevens, Servi JC

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Heijligers, Malou

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Alkuraya, Fowzan S

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Lisfeld, Jasmin

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Neu, Axel

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Paoli Monteiro, Fabíola

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Santos Pessoa, André Luiz

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Camelo-Filho, Antonio Edvan

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Kok, Fernando

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Koeberl, Dwight

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Riley, Kacie

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Burglen, Lydie

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Doummar, Diane

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Héron, Bénédicte

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Mignot, Cyril

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Keren, Boris

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Charles, Perrine

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Nava, Caroline

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Bernhard, Felix P

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Kühn, Andrea A

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Thoms, Sven

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Morrie, Ryan D

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Mekhoubad, Shila

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Green, Eric M

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Barmada, Sami J

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Gitler, Aaron D

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Jahn, Olaf

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Rhee, Jeong Seop

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Rosenmund, Christian

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Mitkovski, Mišo

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Sticht, Heinrich

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Sun, Han

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Le Gac, Gerald

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Taschenberger, Holger

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Brose, Nils

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Dittman, Jeremy S

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Rauch, Anita

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Lipstein, Noa

dc.date.accessioned

2025-12-01T17:06:40Z

dc.date.available

2025-12-01T17:06:40Z

dc.date.issued

2025-11

dc.description.abstract

The UNC13A gene encodes a presynaptic protein that is crucial for setting the strength and dynamics of information transfer between neurons. Here we describe a neurodevelopmental syndrome caused by germline coding or splice-site variants in UNC13A. The syndrome presents with variable degrees of developmental delay and intellectual disability, seizures of different types, tremor and dyskinetic movements and, in some cases, death in early childhood. Using assays with expression of UNC13A variants in mouse hippocampal neurons and in Caenorhabditis elegans, we identify three mechanisms of pathogenicity, including reduction in synaptic strength caused by reduced UNC13A protein expression, increased neurotransmission caused by UNC13A gain-of-function and impaired regulation of neurotransmission by second messenger signalling. Based on a strong genotype-phenotype-functional correlation, we classify three UNC13A syndrome subtypes (types A-C). We conclude that the precise regulation of neurotransmitter release by UNC13A is critical for human nervous system function.

dc.identifier

10.1038/s41588-025-02361-5

dc.identifier.issn

1061-4036

dc.identifier.issn

1546-1718

dc.identifier.uri

https://hdl.handle.net/10161/33699

dc.language

eng

dc.publisher

Springer Science and Business Media LLC

dc.relation.ispartof

Nature genetics

dc.relation.isversionof

10.1038/s41588-025-02361-5

dc.rights.uri

https://creativecommons.org/licenses/by-nc/4.0

dc.subject

Hippocampus

dc.subject

Neurons

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Synapses

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Animals

dc.subject

Humans

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Mice

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Caenorhabditis elegans

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Syndrome

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Caenorhabditis elegans Proteins

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Nerve Tissue Proteins

dc.subject

Synaptic Transmission

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Female

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Male

dc.subject

Intellectual Disability

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Neurodevelopmental Disorders

dc.title

Pathogenic UNC13A variants cause a neurodevelopmental syndrome by impairing synaptic function.

dc.type

Journal article

duke.contributor.orcid

Koeberl, Dwight|0000-0003-4513-2464

pubs.begin-page

2691

pubs.end-page

2704

pubs.issue

11

pubs.organisational-group

Duke

pubs.organisational-group

School of Medicine

pubs.organisational-group

Basic Science Departments

pubs.organisational-group

Clinical Science Departments

pubs.organisational-group

Cell Biology

pubs.organisational-group

Molecular Genetics and Microbiology

pubs.organisational-group

Pediatrics

pubs.organisational-group

Pediatrics, Medical Genetics

pubs.publication-status

Published

pubs.volume

57

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