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Germline de novo variant F747S extends the phenotypic spectrum of CACNA1D Ca(2+) channelopathies

Germline gain-of-function missense variants in the pore-forming Cav1.3 α1-subunit (CACNA1D gene) confer high risk for a severe neurodevelopmental disorder with or without endocrine symptoms. Here, we report a 4-week-old new-born with the novel de novo missense variant F747S with a so far not describ...

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Autores principales: Török, Ferenc, Tezcan, Kamer, Filippini, Ludovica, Fernández-Quintero, Monica L, Zanetti, Lucia, Liedl, Klaus R, Drexel, Raphaela S, Striessnig, Jörg, Ortner, Nadine J
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9941835/
https://www.ncbi.nlm.nih.gov/pubmed/36208199
http://dx.doi.org/10.1093/hmg/ddac248
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author Török, Ferenc
Tezcan, Kamer
Filippini, Ludovica
Fernández-Quintero, Monica L
Zanetti, Lucia
Liedl, Klaus R
Drexel, Raphaela S
Striessnig, Jörg
Ortner, Nadine J
author_facet Török, Ferenc
Tezcan, Kamer
Filippini, Ludovica
Fernández-Quintero, Monica L
Zanetti, Lucia
Liedl, Klaus R
Drexel, Raphaela S
Striessnig, Jörg
Ortner, Nadine J
author_sort Török, Ferenc
collection PubMed
description Germline gain-of-function missense variants in the pore-forming Cav1.3 α1-subunit (CACNA1D gene) confer high risk for a severe neurodevelopmental disorder with or without endocrine symptoms. Here, we report a 4-week-old new-born with the novel de novo missense variant F747S with a so far not described prominent jittering phenotype in addition to symptoms previously reported for CACNA1D mutations including developmental delay, elevated aldosterone level and transient hypoglycemia. We confirmed the pathogenicity of this variant in whole-cell patch-clamp experiments with wild-type and F747S mutant channels heterologously expressed together with α2δ1 and cytosolic β3 or membrane-bound β2a subunits. Mutation F747S caused the quantitatively largest shift in the voltage dependence of activation (−28 mV) reported so far for CACNA1D germline mutations. It also shifted inactivation to more negative voltages, slowed the time course of current inactivation and slowed current deactivation upon repolarization with both co-expressed β-subunits. In silico modelling and molecular docking, simulations revealed that this gain-of-function phenotype can be explained by formation of a novel inter-domain hydrogen bond between mutant residues S747 (IIS6) with N1145 (IIIS6) stabilizing selectively the activated open channel state. F747S displayed 2–6-fold increased sensitivity for the L-type Ca(2+) channel blocker isradipine compared to wild type. Our data confirm the pathogenicity of the F747S variant with very strong gain-of-function gating changes, which may contribute to the novel jittering phenotype. Increased sensitivity for isradipine suggests this drug for potential symptomatic off-label treatment for carriers of this mutation.
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spelling pubmed-99418352023-02-21 Germline de novo variant F747S extends the phenotypic spectrum of CACNA1D Ca(2+) channelopathies Török, Ferenc Tezcan, Kamer Filippini, Ludovica Fernández-Quintero, Monica L Zanetti, Lucia Liedl, Klaus R Drexel, Raphaela S Striessnig, Jörg Ortner, Nadine J Hum Mol Genet Original Article Germline gain-of-function missense variants in the pore-forming Cav1.3 α1-subunit (CACNA1D gene) confer high risk for a severe neurodevelopmental disorder with or without endocrine symptoms. Here, we report a 4-week-old new-born with the novel de novo missense variant F747S with a so far not described prominent jittering phenotype in addition to symptoms previously reported for CACNA1D mutations including developmental delay, elevated aldosterone level and transient hypoglycemia. We confirmed the pathogenicity of this variant in whole-cell patch-clamp experiments with wild-type and F747S mutant channels heterologously expressed together with α2δ1 and cytosolic β3 or membrane-bound β2a subunits. Mutation F747S caused the quantitatively largest shift in the voltage dependence of activation (−28 mV) reported so far for CACNA1D germline mutations. It also shifted inactivation to more negative voltages, slowed the time course of current inactivation and slowed current deactivation upon repolarization with both co-expressed β-subunits. In silico modelling and molecular docking, simulations revealed that this gain-of-function phenotype can be explained by formation of a novel inter-domain hydrogen bond between mutant residues S747 (IIS6) with N1145 (IIIS6) stabilizing selectively the activated open channel state. F747S displayed 2–6-fold increased sensitivity for the L-type Ca(2+) channel blocker isradipine compared to wild type. Our data confirm the pathogenicity of the F747S variant with very strong gain-of-function gating changes, which may contribute to the novel jittering phenotype. Increased sensitivity for isradipine suggests this drug for potential symptomatic off-label treatment for carriers of this mutation. Oxford University Press 2022-10-08 /pmc/articles/PMC9941835/ /pubmed/36208199 http://dx.doi.org/10.1093/hmg/ddac248 Text en © The Author(s) 2022. Published by Oxford University Press. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
Török, Ferenc
Tezcan, Kamer
Filippini, Ludovica
Fernández-Quintero, Monica L
Zanetti, Lucia
Liedl, Klaus R
Drexel, Raphaela S
Striessnig, Jörg
Ortner, Nadine J
Germline de novo variant F747S extends the phenotypic spectrum of CACNA1D Ca(2+) channelopathies
title Germline de novo variant F747S extends the phenotypic spectrum of CACNA1D Ca(2+) channelopathies
title_full Germline de novo variant F747S extends the phenotypic spectrum of CACNA1D Ca(2+) channelopathies
title_fullStr Germline de novo variant F747S extends the phenotypic spectrum of CACNA1D Ca(2+) channelopathies
title_full_unstemmed Germline de novo variant F747S extends the phenotypic spectrum of CACNA1D Ca(2+) channelopathies
title_short Germline de novo variant F747S extends the phenotypic spectrum of CACNA1D Ca(2+) channelopathies
title_sort germline de novo variant f747s extends the phenotypic spectrum of cacna1d ca(2+) channelopathies
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9941835/
https://www.ncbi.nlm.nih.gov/pubmed/36208199
http://dx.doi.org/10.1093/hmg/ddac248
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