The Biallelic Inheritance of Two Novel SCN1A Variants Results in Developmental and Epileptic Encephalopathy Responsive to Levetiracetam

Author:

Dinoi Giorgia1,Conte Elena1ORCID,Palumbo Orazio2ORCID,Benvenuto Mario2ORCID,Coppola Maria Antonietta1,Palumbo Pietro2ORCID,Lastella Patrizia3,Boccanegra Brigida1ORCID,Di Muro Ester2ORCID,Castori Marco2,Carella Massimo2ORCID,Sciruicchio Vittorio4ORCID,de Tommaso Marina5ORCID,Liantonio Antonella1,De Luca Annamaria1ORCID,La Neve Angela5,Imbrici Paola1ORCID

Affiliation:

1. Department of Pharmacy—Drug Sciences, University of Bari “Aldo Moro”, 70125 Bari, Italy

2. Division of Medical Genetics, Fondazione IRCCS-Casa Sollievo della Sofferenza, 71013 San Giovanni Rotondo, Italy

3. Centro Sovraziendale Malattie Rare, UOC Medicina Interna Universitaria “C. Frugoni”, AOU Policlinico Consorziale di Bari, 70124 Bari, Italy

4. Children Epilepsy and EEG Center, Ospedale San Paolo di Bari, 70123 Bari, Italy

5. DiBraiN Department, University of Bari “Aldo Moro”, 70124 Bari, Italy

Abstract

Loss-, gain-of-function and mixed variants in SCN1A (Nav1.1 voltage-gated sodium channel) have been associated with a spectrum of neurologic disorders with different severity and drug-responsiveness. Most SCN1A variants are heterozygous changes occurring de novo or dominantly inherited; recessive inheritance has been reported in a few cases. Here, we report a family in which the biallelic inheritance of two novel SCN1A variants, N935Y and H1393Q, occurs in two siblings presenting with drug-responsive developmental and epileptic encephalopathy and born to heterozygous asymptomatic parents. To assess the genotype–phenotype correlation and support the treatment choice, HEK 293 cells were transfected with different combinations of the SCN1A WT and mutant cDNAs, and the resulting sodium currents were recorded through whole-cell patch-clamp. Functional studies showed that the N935Y and H1393Q channels and their combinations with the WT (WT + N935Y and WT + H1393Q) had current densities and biophysical properties comparable with those of their respective control conditions. This explains the asymptomatic condition of the probands’ parents. The co-expression of the N935Y + H1393Q channels, mimicking the recessive inheritance of the two variants in siblings, showed ~20% reduced current amplitude compared with WT and with parental channels. This mild loss of Nav1.1 function may contribute in part to the disease pathogenesis, although other mechanisms may be involved.

Funder

European Union-Next Generation EU-Ministero della Salute PNRR M6/C2

NEXTGENERATIONEU (NGEU), Italian Ministry of University and Research (MUR), National Recovery and Resilience Plan

Publisher

MDPI AG

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