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A novel HADHA variant associated with an atypical moderate and late-onset LCHAD deficiency
Anne-Frédérique Dessein1, Eléonore Hebbar2, Joseph Vamecq3
1Univ. Lille, CHU Lille, Centre de Biologie Pathologie Génétique, UF Métabolisme Général et Maladies Rares, F-59000 Lille, France.
Insights
Long chain 3-hydroxyacyl-CoA dehydrogenase deficiency (LCHADD) is a rare inherited disease. This report details an atypical case, emphasizing early diagnosis and specific management strategies like triheptanoin supplementation.
Area of Science:
- Biochemistry
- Genetics
- Metabolic Disorders
Background:
- Long chain 3-hydroxyacyl-CoA dehydrogenase deficiency (LCHADD) is a rare inherited metabolic disorder.
- Caused by pathogenic variants in the HADHA gene, LCHADD affects long-chain fatty acid oxidation.
- Patients exhibit common fatty acid oxidation defect signs alongside specific retinal and cardiac issues.
Purpose of the Study:
- To report an atypical presentation of LCHADD.
- To highlight the importance of early biochemical and genetic testing for LCHADD.
- To discuss specific management strategies for LCHADD.
Main Methods:
- Clinical evaluation including ophthalmic and cardiac examinations.
- Biochemical analysis of metabolites and fluxomic studies of mitochondrial beta-oxidation.
- Whole exome sequencing and molecular validation of genetic variants.
Main Results:
- An atypical LCHADD case presented with maculopathy and cardiac decompensation.
- Biochemical and fluxomic studies confirmed enzyme blockade consistent with LCHADD.
- Genetic analysis identified a common HADHA variant with a novel variant; the patient responded to triheptanoin.
Conclusions:
- Atypical LCHADD requires early biochemical and genetic assessment.
- Specific management, including triheptanoin supplementation, is recommended.
- This case underscores the need for tailored LCHADD treatment approaches.
Background:
Long chain 3-hydroxyacyl-CoA dehydrogenase deficiency (LCHADD) is a rare inherited disease caused by pathogenic variants of HADHA gene. Along with signs common to fatty acid oxidation defects (FAOD), specific retina and heart alterations are observed. Because long-chain fatty acid oxidation is selectively affected, supplementations with short/medium-chain fats represent energetic sources bypassing the enzymatic blockade. Here, we report on an atypical presentation of the disease.
Methods:
Clinical features were described with medical explorations including ophthalmic and cardiac examination. Biological underlying defects were investigated by measurements of biochemical metabolites and by fluxomic studies of mitochondrial β-oxidation. Whole exome sequencing and molecular validation of variants confirmed the diagnosis.
Results:
The patient has developed at nine years an unlabeled maculopathy, and at 28 years, an acute cardiac decompensation without any premise. Blood individual acylcarnitine analysis showed a rise in hydroxylated long-chain fatty acids and fluxomic studies validated enzyme blockade consistent with LCHADD. Genetic analysis revealed the common p.(Glu510Gln) variant in HADHA, in trans with a novel variant c.1108G > A, p.(Gly370Arg) located in the NAD binding domain. Patient pathology was responsive to triheptanoin supplementation.
Conclusion:
This atypical LCHADD form report should encourage the early assessment of biochemical and genetic testing as a specific management is recommended (combination with fast avoidance, low fat-high carbohydrate diet, medium-even-chain triglycerides or triheptanoin supplementation).
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