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Next-generation sequencing identifies a homozygous mutation in ACADVL associated with pediatric familial dilated
S J Carlus1, I S Almuzaini, M Karthikeyan
1Pediatrics Department, Cardiogenetics Unit, College of Medicine, Taibah University, Al-Madinah, Kingdom of Saudi Arabia. justincarlus@gmail.com.
Insights
A novel mutation in the ACADVL gene (p.R450H) causes familial dilated cardiomyopathy (DCM) in a Saudi Arabian family. This genetic finding highlights the importance of targeted gene sequencing for diagnosing rare pediatric heart conditions.
Area of Science:
- Genetics
- Cardiology
- Biochemistry
Background:
- Pediatric familial dilated cardiomyopathy (DCM) is a severe inherited heart condition with complex genetics.
- Over 100 genes are linked to DCM, yet many causative mutations remain unidentified.
Purpose of the Study:
- To identify the specific gene responsible for DCM in a consanguineous Saudi Arabian family.
- To investigate the genetic basis of DCM in a family with a history of sudden cardiac death.
Main Methods:
- Next-generation sequencing (NGS) of 181 candidate DCM genes in affected and unaffected family members.
- In silico analyses including protein modeling and dynamic simulations to assess mutation impact.
- Metabolic screening to confirm functional consequences of the identified mutation.
Main Results:
- A homozygous missense mutation (p.R450H) in the acyl-CoA dehydrogenase very long chain gene (ACADVL) was identified in affected individuals.
- The ACADVL p.R450H mutation was absent in controls and predicted to disrupt protein structure and function.
- Affected individuals exhibited very long-chain acyl-CoA dehydrogenase (VLCAD) deficiency.
Conclusions:
- The ACADVL R450H mutation is an uncommon, autosomal recessive cause of DCM.
- Targeted NGS is an effective tool for diagnosing familial DCM with unknown genetic origins.
Objective:
Pediatric familial dilated cardiomyopathy (DCM) is a rare and severe heart disease. The genetics of familial DCM are complex and include over 100 known disease-causing genes, but many causative genes are unknown. We aimed to identify the causative gene for DCM in a consanguineous Saudi Arabian family with affected family members and a history of sudden death.
Patients And Methods:
Affected (two children) and unaffected (one sibling and the mother) family members were screened by next-generation sequencing (NGS) for 181 candidate DCM genes and underwent metabolic screening. Fifty-seven clinically annotated controls and 46 DCM cases were then tested for the identified mutation. In silico structural and functional analyses including protein modeling, structure prediction and dynamic simulations were performed.
Results:
A homozygous missense mutation in exon 15 of the acyl-CoA dehydrogenase very long chain gene (ACADVL; chr17:7127303; G>A) was identified in affected subjects that substituted histidine for arginine at codon 450 (p.R450H). The variant was heterozygous in the mother and unaffected sister. The mutation was absent in 57 clinically annotated controls and 48 pediatric DCM cases. The mutation was predicted to cause a significant and deleterious change in the ACADVL protein structure that affected drug binding, stability, and conformation. Metabolic screening confirmed VLCAD deficiency in affected individuals.
Conclusions:
The ACADVL R450H mutation is an uncommon cause of the DCM phenotype that appears to be autosomal recessive. Targeted NGS is useful for identifying the causative mutation(s) in familial DCM of unknown genetic cause.
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Gene Families
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