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Published on: August 8, 2022
Digenic Inheritance of LAMA4 and MYH7 Mutations in Patient with Infantile Dilated Cardiomyopathy
Atiyeh M Abdallah1, S Justin Carlus2, Abdulhadi H Al-Mazroea3
1West Midlands Regional Genetics Laboratory, The Birmingham Women's and Children's NHS Foundation Trus, B15 2TT Birmingham, UK. atiyeh.abdallah@nhs.net.
Insights
Genetic analysis revealed a novel LAMA4 variant potentially causing infantile dilated cardiomyopathy (DCM) through digenic inheritance. This finding highlights the complexity of genetic causes for DCM in infants.
Area of Science:
- Genetics
- Cardiology
- Molecular Biology
Background:
- Dilated cardiomyopathy (DCM) is a rare, heterogeneous cardiac condition.
- Infantile DCM presents with severe left ventricular enlargement and impaired function.
- Over 100 genes are implicated in DCM, necessitating advanced genetic investigation.
Purpose of the Study:
- Identify novel genetic variations linked to infantile DCM.
- Investigate the genetic basis of DCM in three consanguineous Saudi families.
- Explore digenic inheritance patterns in severe pediatric cardiomyopathy.
Main Methods:
- Targeted next-generation sequencing (NGS) of 181 cardiomyopathy-related genes.
- Variant confirmation and frequency analysis in DCM cases and healthy controls.
- Bioinformatic prediction of variant pathogenicity.
Main Results:
- Digenic inheritance of a novel LAMA4 variant (p.Asp1309Asn) and a known MYH7 mutation identified in one family.
- The novel LAMA4 variant was predicted as likely pathogenic.
- Two families showed no identifiable deleterious variants, suggesting other genetic factors.
Conclusions:
- Inheritance of multiple genetic variants can synergistically cause severe DCM.
- A novel p.Asp1309Asn variation in LAMA4 is associated with infantile DCM.
- Targeted NGS is crucial for DCM molecular diagnosis and family management.
Abstract:
Background and objectives: Dilated cardiomyopathy (DCM) is a rare cardiac disease characterised by left ventricular enlargement, reduced left ventricular contractility, and impaired systolic function. Childhood DCM is clinically and genetically heterogenous and associated with mutations in over 100 genes. The aim of this study was to identify novel variations associated with infantile DCM. Materials and Methods: Targeted next generation sequencing (NGS) of 181 cardiomyopathy-related genes was performed in three unrelated consanguineous families from Saudi Arabia. Variants were confirmed and their frequency established in 50 known DCM cases and 80 clinically annotated healthy controls. Results: The three index cases presented between 7 and 10 months of age with severe DCM. In Family A, there was digenic inheritance of two heterozygous variants: a novel variant in LAMA4 (c.3925G > A, p.Asp1309Asn) and a known DCM mutation in MYH7 (c.2770G > A; p.Glu924Lys). The LAMA4 p.Asp1309Asn variant was predicted to be likely pathogenic according to international guidelines. The other two families had no identifiable potentially deleterious variants. Conclusions: Inheritance of two genetic variants may have a synergistic or dose effect to cause severe DCM. We report of a novel p.Asp1309Asn variation associated with DCM. Targeted NGS is useful in the molecular diagnosis of DCM and to guide whole-family management and counselling.
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