Cargando…

A homozygous nonsense mutation in DCBLD2 is a candidate cause of developmental delay, dysmorphic features and restrictive cardiomyopathy

DCBLD2 encodes discodin, CUB and LCCL domain-containing protein 2, a type-I transmembrane receptor that is involved in intracellular receptor signalling pathways and the regulation of cell growth. In this report, we describe a 5-year-old female who presented severe clinical features, including restr...

Descripción completa

Detalles Bibliográficos
Autores principales: Alhamoudi, Kheloud M., Barhoumi, Tlili, Al-Eidi, Hamad, Asiri, Abdulaziz, Nashabat, Marwan, Alaamery, Manal, Alharbi, Masheal, Alhaidan, Yazeid, Tabarki, Brahim, Umair, Muhammad, Alfadhel, Majid
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8213761/
https://www.ncbi.nlm.nih.gov/pubmed/34145321
http://dx.doi.org/10.1038/s41598-021-92026-0
_version_ 1783709921525628928
author Alhamoudi, Kheloud M.
Barhoumi, Tlili
Al-Eidi, Hamad
Asiri, Abdulaziz
Nashabat, Marwan
Alaamery, Manal
Alharbi, Masheal
Alhaidan, Yazeid
Tabarki, Brahim
Umair, Muhammad
Alfadhel, Majid
author_facet Alhamoudi, Kheloud M.
Barhoumi, Tlili
Al-Eidi, Hamad
Asiri, Abdulaziz
Nashabat, Marwan
Alaamery, Manal
Alharbi, Masheal
Alhaidan, Yazeid
Tabarki, Brahim
Umair, Muhammad
Alfadhel, Majid
author_sort Alhamoudi, Kheloud M.
collection PubMed
description DCBLD2 encodes discodin, CUB and LCCL domain-containing protein 2, a type-I transmembrane receptor that is involved in intracellular receptor signalling pathways and the regulation of cell growth. In this report, we describe a 5-year-old female who presented severe clinical features, including restrictive cardiomyopathy, developmental delay, spasticity and dysmorphic features. Trio-whole-exome sequencing and segregation analysis were performed to identify the genetic cause of the disease within the family. A novel homozygous nonsense variant in the DCBLD2 gene (c.80G > A, p.W27*) was identified as the most likely cause of the patient’s phenotype. This nonsense variant falls in the extracellular N-terminus of DCBLD2 and thus might affect proper protein function of the transmembrane receptor. A number of in vitro investigations were performed on the proband’s skin fibroblasts compared to normal fibroblasts, which allowed a comprehensive assessment resulting in the functional characterization of the identified DCBLD2 nonsense variant in different cellular processes. Our data propose a significant association between the identified variant and the observed reduction in cell proliferation, cell cycle progression, intracellular ROS, and Ca2 + levels, which would likely explain the phenotypic presentation of the patient as associated with lethal restrictive cardiomyopathy.
format Online
Article
Text
id pubmed-8213761
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Nature Publishing Group UK
record_format MEDLINE/PubMed
spelling pubmed-82137612021-06-22 A homozygous nonsense mutation in DCBLD2 is a candidate cause of developmental delay, dysmorphic features and restrictive cardiomyopathy Alhamoudi, Kheloud M. Barhoumi, Tlili Al-Eidi, Hamad Asiri, Abdulaziz Nashabat, Marwan Alaamery, Manal Alharbi, Masheal Alhaidan, Yazeid Tabarki, Brahim Umair, Muhammad Alfadhel, Majid Sci Rep Article DCBLD2 encodes discodin, CUB and LCCL domain-containing protein 2, a type-I transmembrane receptor that is involved in intracellular receptor signalling pathways and the regulation of cell growth. In this report, we describe a 5-year-old female who presented severe clinical features, including restrictive cardiomyopathy, developmental delay, spasticity and dysmorphic features. Trio-whole-exome sequencing and segregation analysis were performed to identify the genetic cause of the disease within the family. A novel homozygous nonsense variant in the DCBLD2 gene (c.80G > A, p.W27*) was identified as the most likely cause of the patient’s phenotype. This nonsense variant falls in the extracellular N-terminus of DCBLD2 and thus might affect proper protein function of the transmembrane receptor. A number of in vitro investigations were performed on the proband’s skin fibroblasts compared to normal fibroblasts, which allowed a comprehensive assessment resulting in the functional characterization of the identified DCBLD2 nonsense variant in different cellular processes. Our data propose a significant association between the identified variant and the observed reduction in cell proliferation, cell cycle progression, intracellular ROS, and Ca2 + levels, which would likely explain the phenotypic presentation of the patient as associated with lethal restrictive cardiomyopathy. Nature Publishing Group UK 2021-06-18 /pmc/articles/PMC8213761/ /pubmed/34145321 http://dx.doi.org/10.1038/s41598-021-92026-0 Text en © The Author(s) 2021 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article's Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article's Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Alhamoudi, Kheloud M.
Barhoumi, Tlili
Al-Eidi, Hamad
Asiri, Abdulaziz
Nashabat, Marwan
Alaamery, Manal
Alharbi, Masheal
Alhaidan, Yazeid
Tabarki, Brahim
Umair, Muhammad
Alfadhel, Majid
A homozygous nonsense mutation in DCBLD2 is a candidate cause of developmental delay, dysmorphic features and restrictive cardiomyopathy
title A homozygous nonsense mutation in DCBLD2 is a candidate cause of developmental delay, dysmorphic features and restrictive cardiomyopathy
title_full A homozygous nonsense mutation in DCBLD2 is a candidate cause of developmental delay, dysmorphic features and restrictive cardiomyopathy
title_fullStr A homozygous nonsense mutation in DCBLD2 is a candidate cause of developmental delay, dysmorphic features and restrictive cardiomyopathy
title_full_unstemmed A homozygous nonsense mutation in DCBLD2 is a candidate cause of developmental delay, dysmorphic features and restrictive cardiomyopathy
title_short A homozygous nonsense mutation in DCBLD2 is a candidate cause of developmental delay, dysmorphic features and restrictive cardiomyopathy
title_sort homozygous nonsense mutation in dcbld2 is a candidate cause of developmental delay, dysmorphic features and restrictive cardiomyopathy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8213761/
https://www.ncbi.nlm.nih.gov/pubmed/34145321
http://dx.doi.org/10.1038/s41598-021-92026-0
work_keys_str_mv AT alhamoudikheloudm ahomozygousnonsensemutationindcbld2isacandidatecauseofdevelopmentaldelaydysmorphicfeaturesandrestrictivecardiomyopathy
AT barhoumitlili ahomozygousnonsensemutationindcbld2isacandidatecauseofdevelopmentaldelaydysmorphicfeaturesandrestrictivecardiomyopathy
AT aleidihamad ahomozygousnonsensemutationindcbld2isacandidatecauseofdevelopmentaldelaydysmorphicfeaturesandrestrictivecardiomyopathy
AT asiriabdulaziz ahomozygousnonsensemutationindcbld2isacandidatecauseofdevelopmentaldelaydysmorphicfeaturesandrestrictivecardiomyopathy
AT nashabatmarwan ahomozygousnonsensemutationindcbld2isacandidatecauseofdevelopmentaldelaydysmorphicfeaturesandrestrictivecardiomyopathy
AT alaamerymanal ahomozygousnonsensemutationindcbld2isacandidatecauseofdevelopmentaldelaydysmorphicfeaturesandrestrictivecardiomyopathy
AT alharbimasheal ahomozygousnonsensemutationindcbld2isacandidatecauseofdevelopmentaldelaydysmorphicfeaturesandrestrictivecardiomyopathy
AT alhaidanyazeid ahomozygousnonsensemutationindcbld2isacandidatecauseofdevelopmentaldelaydysmorphicfeaturesandrestrictivecardiomyopathy
AT tabarkibrahim ahomozygousnonsensemutationindcbld2isacandidatecauseofdevelopmentaldelaydysmorphicfeaturesandrestrictivecardiomyopathy
AT umairmuhammad ahomozygousnonsensemutationindcbld2isacandidatecauseofdevelopmentaldelaydysmorphicfeaturesandrestrictivecardiomyopathy
AT alfadhelmajid ahomozygousnonsensemutationindcbld2isacandidatecauseofdevelopmentaldelaydysmorphicfeaturesandrestrictivecardiomyopathy
AT alhamoudikheloudm homozygousnonsensemutationindcbld2isacandidatecauseofdevelopmentaldelaydysmorphicfeaturesandrestrictivecardiomyopathy
AT barhoumitlili homozygousnonsensemutationindcbld2isacandidatecauseofdevelopmentaldelaydysmorphicfeaturesandrestrictivecardiomyopathy
AT aleidihamad homozygousnonsensemutationindcbld2isacandidatecauseofdevelopmentaldelaydysmorphicfeaturesandrestrictivecardiomyopathy
AT asiriabdulaziz homozygousnonsensemutationindcbld2isacandidatecauseofdevelopmentaldelaydysmorphicfeaturesandrestrictivecardiomyopathy
AT nashabatmarwan homozygousnonsensemutationindcbld2isacandidatecauseofdevelopmentaldelaydysmorphicfeaturesandrestrictivecardiomyopathy
AT alaamerymanal homozygousnonsensemutationindcbld2isacandidatecauseofdevelopmentaldelaydysmorphicfeaturesandrestrictivecardiomyopathy
AT alharbimasheal homozygousnonsensemutationindcbld2isacandidatecauseofdevelopmentaldelaydysmorphicfeaturesandrestrictivecardiomyopathy
AT alhaidanyazeid homozygousnonsensemutationindcbld2isacandidatecauseofdevelopmentaldelaydysmorphicfeaturesandrestrictivecardiomyopathy
AT tabarkibrahim homozygousnonsensemutationindcbld2isacandidatecauseofdevelopmentaldelaydysmorphicfeaturesandrestrictivecardiomyopathy
AT umairmuhammad homozygousnonsensemutationindcbld2isacandidatecauseofdevelopmentaldelaydysmorphicfeaturesandrestrictivecardiomyopathy
AT alfadhelmajid homozygousnonsensemutationindcbld2isacandidatecauseofdevelopmentaldelaydysmorphicfeaturesandrestrictivecardiomyopathy