Publication:
The characterization of new de novo CACNA1G variants affecting the intracellular gate of Cav3.1 channel broadens the spectrum of neurodevelopmental phenotypes in SCA42ND.

cris.virtualsource.author-orcidcd44172e-f571-4cce-84bc-b710617aea2c
dc.contributor.authorQebibo, Leila
dc.contributor.authorDavakan, Amaël
dc.contributor.authorNesson-Dauphin, Mathilde
dc.contributor.authorBoulali, Najlae
dc.contributor.authorSiquier-Pernet, Karine
dc.contributor.authorAfenjar, Alexandra
dc.contributor.authorAmiel, Jeanne
dc.contributor.authorBartholdi, Deborah
dc.contributor.authorBarth, Magalie
dc.contributor.authorBlondiaux, Eléonore
dc.contributor.authorCristian, Ingrid
dc.contributor.authorFrazier, Zoe
dc.contributor.authorGoldenberg, Alice
dc.contributor.authorGood, Jean-Marc
dc.contributor.authorSalussolia, Catherine Lourdes
dc.contributor.authorSahin, Mustafa
dc.contributor.authorMcCullagh, Helen
dc.contributor.authorMcDonald, Kimberly
dc.contributor.authorMcRae, Anne
dc.contributor.authorMorrison, Jennifer
dc.contributor.authorPinner, Jason
dc.contributor.authorShinawi, Marwan
dc.contributor.authorToutain, Annick
dc.contributor.authorVyhnálková, Emílie
dc.contributor.authorWheeler, Patricia G
dc.contributor.authorWilnai, Yael
dc.contributor.authorHausman-Kedem, Moran
dc.contributor.authorCoolen, Marion
dc.contributor.authorCantagrel, Vincent
dc.contributor.authorBurglen, Lydie
dc.contributor.authorLory, Philippe
dc.date.accessioned2024-12-27T10:35:34Z
dc.date.available2024-12-27T10:35:34Z
dc.date.issued2024-12-12
dc.description.abstractPurpose Missense de novo variants in CACNA1G, which encodes the Cav3.1 T-type calcium channel, have been associated with a severe, early-onset form of cerebellar disorder with neurodevelopmental deficits (SCA42ND). We explored a large series of pediatric cases carrying heterozygous variants in CACNA1G to further characterize genotype-phenotype correlations in SCA42ND.Methods We describe 19 patients with congenital CACNA1G-variants including 6 new heterozygotes of the recurrent SCA42ND variants, p.(Ala961Thr) and p.(Met1531Val), and 8 unreported variants including 7 missense variants, mainly de novo. We carried out genetic and structural analyses of all variants. Patch-clamp recordings were performed to measure their channel activity.Results We provide a consolidated clinical description for the patients carrying p.(Ala961Thr) and p.(Met1531Val). The new variants associated with the more severe phenotypes are found in the Cav3.1 channel intracellular gate. Calcium currents of these Cav3.1 variants showed slow inactivation and deactivation kinetics, and increase in window current, supporting a gain of channel activity. On the contrary, the p.(Met197Arg) variant (IS4-S5 loop) resulted in a loss of channel activity.Conclusion This detailed description of several de novo missense pathogenic variants in CACNA1G, including 13 previously reported cases, supports a clinical spectrum of congenital CACNA1G syndrome beyond spinocerebellar ataxia.
dc.description.sponsorshipClinic of Human Genetics
dc.identifier.doi10.48620/78740
dc.identifier.pmid39674904
dc.identifier.publisherDOI10.1016/j.gim.2024.101337
dc.identifier.urihttps://boris-portal.unibe.ch/handle/20.500.12422/194735
dc.language.isoen
dc.publisherElsevier
dc.relation.ispartofGenetics in Medicine
dc.relation.issn1530-0366
dc.relation.issn1098-3600
dc.subjectCACNA1G gene
dc.subjectSpinocerebellar ataxia
dc.subjectT-type voltage-gated calcium channel
dc.subjectcerebellum
dc.subjectneurodevelopment
dc.subject.ddc600 - Technology::610 - Medicine & health
dc.titleThe characterization of new de novo CACNA1G variants affecting the intracellular gate of Cav3.1 channel broadens the spectrum of neurodevelopmental phenotypes in SCA42ND.
dc.typearticle
dspace.entity.typePublication
oaire.citation.startPage101337
oairecerif.author.affiliationClinic of Human Genetics
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unibe.description.ispublishedinpress
unibe.refereedtrue
unibe.subtype.articlejournal

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