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Identification of a novel synaptic protein, TMTC3, involved in periventricular nodular heterotopia with intellectual disability and epilepsy

Defects in neuronal migration cause brain malformations, which are associated with intellectual disability (ID) and epilepsy. Using exome sequencing, we identified compound heterozygous variants (p.Arg71His and p. Leu729ThrfsTer6) in TMTC3, encoding transmembrane and tetratricopeptide repeat contain...

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Autores principales: Farhan, Sali M K, Nixon, Kevin C J, Everest, Michelle, Edwards, Tara N, Long, Shirley, Segal, Dmitri, Knip, Maria J, Arts, Heleen H, Chakrabarti, Rana, Wang, Jian, Robinson, John F, Lee, Donald, Mirsattari, Seyed M, Rupar, C Anthony, Siu, Victoria M, Poulter, Michael O, Hegele, Robert A, Kramer, Jamie M
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5886076/
https://www.ncbi.nlm.nih.gov/pubmed/28973161
http://dx.doi.org/10.1093/hmg/ddx316
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author Farhan, Sali M K
Nixon, Kevin C J
Everest, Michelle
Edwards, Tara N
Long, Shirley
Segal, Dmitri
Knip, Maria J
Arts, Heleen H
Chakrabarti, Rana
Wang, Jian
Robinson, John F
Lee, Donald
Mirsattari, Seyed M
Rupar, C Anthony
Siu, Victoria M
Poulter, Michael O
Hegele, Robert A
Kramer, Jamie M
author_facet Farhan, Sali M K
Nixon, Kevin C J
Everest, Michelle
Edwards, Tara N
Long, Shirley
Segal, Dmitri
Knip, Maria J
Arts, Heleen H
Chakrabarti, Rana
Wang, Jian
Robinson, John F
Lee, Donald
Mirsattari, Seyed M
Rupar, C Anthony
Siu, Victoria M
Poulter, Michael O
Hegele, Robert A
Kramer, Jamie M
author_sort Farhan, Sali M K
collection PubMed
description Defects in neuronal migration cause brain malformations, which are associated with intellectual disability (ID) and epilepsy. Using exome sequencing, we identified compound heterozygous variants (p.Arg71His and p. Leu729ThrfsTer6) in TMTC3, encoding transmembrane and tetratricopeptide repeat containing 3, in four siblings with nocturnal seizures and ID. Three of the four siblings have periventricular nodular heterotopia (PVNH), a common brain malformation caused by failure of neurons to migrate from the ventricular zone to the cortex. Expression analysis using patient-derived cells confirmed reduced TMTC3 transcript levels and loss of the TMTC3 protein compared to parental and control cells. As TMTC3 function is currently unexplored in the brain, we gathered support for a neurobiological role for TMTC3 by generating flies with post-mitotic neuron-specific knockdown of the highly conserved Drosophila melanogaster TMTC3 ortholog, CG4050/tmtc3. Neuron-specific knockdown of tmtc3 in flies resulted in increased susceptibility to induced seizures. Importantly, this phenotype was rescued by neuron-specific expression of human TMTC3, suggesting a role for TMTC3 in seizure biology. In addition, we observed co-localization of TMTC3 in the rat brain with vesicular GABA transporter (VGAT), a presynaptic marker for inhibitory synapses. TMTC3 is localized at VGAT positive pre-synaptic terminals and boutons in the rat hypothalamus and piriform cortex, suggesting a role for TMTC3 in the regulation of GABAergic inhibitory synapses. TMTC3 did not co-localize with Vglut2, a presynaptic marker for excitatory neurons. Our data identified TMTC3 as a synaptic protein that is involved in PVNH with ID and epilepsy, in addition to its previously described association with cobblestone lissencephaly.
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spelling pubmed-58860762018-04-09 Identification of a novel synaptic protein, TMTC3, involved in periventricular nodular heterotopia with intellectual disability and epilepsy Farhan, Sali M K Nixon, Kevin C J Everest, Michelle Edwards, Tara N Long, Shirley Segal, Dmitri Knip, Maria J Arts, Heleen H Chakrabarti, Rana Wang, Jian Robinson, John F Lee, Donald Mirsattari, Seyed M Rupar, C Anthony Siu, Victoria M Poulter, Michael O Hegele, Robert A Kramer, Jamie M Hum Mol Genet Articles Defects in neuronal migration cause brain malformations, which are associated with intellectual disability (ID) and epilepsy. Using exome sequencing, we identified compound heterozygous variants (p.Arg71His and p. Leu729ThrfsTer6) in TMTC3, encoding transmembrane and tetratricopeptide repeat containing 3, in four siblings with nocturnal seizures and ID. Three of the four siblings have periventricular nodular heterotopia (PVNH), a common brain malformation caused by failure of neurons to migrate from the ventricular zone to the cortex. Expression analysis using patient-derived cells confirmed reduced TMTC3 transcript levels and loss of the TMTC3 protein compared to parental and control cells. As TMTC3 function is currently unexplored in the brain, we gathered support for a neurobiological role for TMTC3 by generating flies with post-mitotic neuron-specific knockdown of the highly conserved Drosophila melanogaster TMTC3 ortholog, CG4050/tmtc3. Neuron-specific knockdown of tmtc3 in flies resulted in increased susceptibility to induced seizures. Importantly, this phenotype was rescued by neuron-specific expression of human TMTC3, suggesting a role for TMTC3 in seizure biology. In addition, we observed co-localization of TMTC3 in the rat brain with vesicular GABA transporter (VGAT), a presynaptic marker for inhibitory synapses. TMTC3 is localized at VGAT positive pre-synaptic terminals and boutons in the rat hypothalamus and piriform cortex, suggesting a role for TMTC3 in the regulation of GABAergic inhibitory synapses. TMTC3 did not co-localize with Vglut2, a presynaptic marker for excitatory neurons. Our data identified TMTC3 as a synaptic protein that is involved in PVNH with ID and epilepsy, in addition to its previously described association with cobblestone lissencephaly. Oxford University Press 2017-11-01 2017-08-16 /pmc/articles/PMC5886076/ /pubmed/28973161 http://dx.doi.org/10.1093/hmg/ddx316 Text en © The Author 2017. Published by Oxford University Press. http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Articles
Farhan, Sali M K
Nixon, Kevin C J
Everest, Michelle
Edwards, Tara N
Long, Shirley
Segal, Dmitri
Knip, Maria J
Arts, Heleen H
Chakrabarti, Rana
Wang, Jian
Robinson, John F
Lee, Donald
Mirsattari, Seyed M
Rupar, C Anthony
Siu, Victoria M
Poulter, Michael O
Hegele, Robert A
Kramer, Jamie M
Identification of a novel synaptic protein, TMTC3, involved in periventricular nodular heterotopia with intellectual disability and epilepsy
title Identification of a novel synaptic protein, TMTC3, involved in periventricular nodular heterotopia with intellectual disability and epilepsy
title_full Identification of a novel synaptic protein, TMTC3, involved in periventricular nodular heterotopia with intellectual disability and epilepsy
title_fullStr Identification of a novel synaptic protein, TMTC3, involved in periventricular nodular heterotopia with intellectual disability and epilepsy
title_full_unstemmed Identification of a novel synaptic protein, TMTC3, involved in periventricular nodular heterotopia with intellectual disability and epilepsy
title_short Identification of a novel synaptic protein, TMTC3, involved in periventricular nodular heterotopia with intellectual disability and epilepsy
title_sort identification of a novel synaptic protein, tmtc3, involved in periventricular nodular heterotopia with intellectual disability and epilepsy
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5886076/
https://www.ncbi.nlm.nih.gov/pubmed/28973161
http://dx.doi.org/10.1093/hmg/ddx316
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