Variants in CLDN5 cause a syndrome characterized by seizures, microcephaly and brain calcifications

التفاصيل البيبلوغرافية
العنوان: Variants in CLDN5 cause a syndrome characterized by seizures, microcephaly and brain calcifications
المؤلفون: Ashish R Deshwar, Cheryl Cytrynbaum, Harsha Murthy, Jessica Zon, David Chitayat, Jonathan Volpatti, Ruth Newbury-Ecob, Sian Ellard, Hana Lango Allen, Emily P Yu, Ramil Noche, Suzi Walker, Stephen W Scherer, Sonal Mahida, Christopher M Elitt, Gaël Nicolas, Alice Goldenberg, Pascale Saugier-Veber, Francois Lecoquierre, Ivana Dabaj, Hannah Meddaugh, Michael Marble, Kim M Keppler-Noreuil, Lucy Drayson, Kristin W Barañano, Anna Chassevent, Katie Agre, Pascaline Létard, Frederic Bilan, Gwenaël Le Guyader, Annie Laquerrière, Keri Ramsey, Lindsay Henderson, Lauren Brady, Mark Tarnopolsky, Matthew Bainbridge, Jennifer Friedman, Yline Capri, Larissa Athayde, Fernando Kok, Juliana Gurgel-Giannetti, Luiza L P Ramos, Susan Blaser, James J Dowling, Rosanna Weksberg
المساهمون: Deshwar, Ashish R [0000-0002-9239-3846], Scherer, Stephen W [0000-0002-8326-1999], Nicolas, Gaël [0000-0001-9391-7800], Dabaj, Ivana [0000-0002-2324-1208], Dowling, James J [0000-0002-3984-4169], Apollo - University of Cambridge Repository
بيانات النشر: Oxford University Press (OUP), 2023.
سنة النشر: 2023
مصطلحات موضوعية: brain calcifications, CLDN5, blood brain barrier, Neurology (clinical)
الوصف: The blood–brain barrier ensures CNS homeostasis and protection from injury. Claudin-5 (CLDN5), an important component of tight junctions, is critical for the integrity of the blood–brain barrier. We have identified de novo heterozygous missense variants in CLDN5 in 15 unrelated patients who presented with a shared constellation of features including developmental delay, seizures (primarily infantile onset focal epilepsy), microcephaly and a recognizable pattern of pontine atrophy and brain calcifications. All variants clustered in one subregion/domain of the CLDN5 gene and the recurrent variants demonstrate genotype–phenotype correlations. We modelled both patient variants and loss of function alleles in the zebrafish to show that the variants analogous to those in patients probably result in a novel aberrant function in CLDN5. In total, human patient and zebrafish data provide parallel evidence that pathogenic sequence variants in CLDN5 cause a novel neurodevelopmental disorder involving disruption of the blood–brain barrier and impaired neuronal function.
وصف الملف: application/pdf
URL الوصول: https://explore.openaire.eu/search/publication?articleId=doi_dedup___::11f5b7a48a2c525d610b1e49ea2bf631
https://www.repository.cam.ac.uk/handle/1810/344185
حقوق: CLOSED
رقم الأكسشن: edsair.doi.dedup.....11f5b7a48a2c525d610b1e49ea2bf631
قاعدة البيانات: OpenAIRE