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Published on: September 15, 2018
Saudi Familial Hypercholesterolemia Patients With Rare LDLR Stop Gain Variant Showed Variable Clinical Phenotype and
Zuhier Ahmed Awan1,2, Omran M Rashidi1,3,4, Bandar Ali Al-Shehri3,4
1Department of Clinical Biochemistry, Faculty of Medicine, King Abdulaziz University, Jeddah, Saudi Arabia.
Insights
Familial hypercholesterolemia (FH) is underdiagnosed. A rare LDLR mutation (c.2027delG) causes severe FH in Saudi families, leading to varied symptoms and treatment resistance.
Area of Science:
- Genetics
- Molecular Biology
- Cardiovascular Medicine
Background:
- Familial hypercholesterolemia (FH) is an inherited lipid disorder often underdiagnosed globally, including in Saudi Arabia.
- Genetic defects in cholesterol metabolism cause severe clinical manifestations of FH.
- Identifying causative mutations is crucial for diagnosis and management.
Purpose of the Study:
- To identify the molecular basis of severe FH in Saudi consanguineous families.
- To characterize a novel pathogenic mutation in the LDLR gene.
- To investigate the genotype-phenotype correlation and treatment response.
Main Methods:
- Recruitment of FH patients from two Saudi families and 92 unrelated FH cases.
- Utilized LipidSeq, a targeted resequencing panel, for mutation identification.
- Applied structural bioinformatics for protein function prediction.
Main Results:
- Identified a rare, founder LDLR stop-gain mutation (c.2027delG, p.Gly676Alafs*33) in 12 FH patients from two families.
- Observed phenotypic heterogeneity based on variant zygosity (homozygous/heterozygous).
- Demonstrated significant LDL-C level variations and resistance to lipid-lowering therapies.
Conclusions:
- The identified LDLR mutation is a rare cause of severe FH in the Saudi population.
- This mutation leads to altered RNA stability and loss of essential LDLR functional domains.
- Genotype-phenotype correlation highlights the mutation's impact on clinical presentation and treatment resistance.
Abstract:
Familial hypercholesterolemia (FH), a well-known lipid disease caused by inherited genetic defects in cholesterol uptake and metabolism is underdiagnosed in many countries including Saudi Arabia. The present study aims to identify the molecular basis of severe clinical manifestations of FH patients from unrelated Saudi consanguineous families. Two Saudi families with multiple FH patients fulfilling the combined FH diagnostic criteria of Simon Broome Register, and the Dutch Lipid Clinic Network (DLCN) were recruited. LipidSeq, a targeted resequencing panel for monogenic dyslipidemias, was used to identify causative pathogenic mutation in these two families and in 92 unrelated FH cases. Twelve FH patients from two unrelated families were sharing a very rare, pathogenic and founder LDLR stop gain mutation i.e., c.2027delG (p.Gly676Alafs*33) in both the homozygous or heterozygous states, but not in unrelated patients. Based on the variant zygosity, a marked phenotypic heterogeneity in terms of LDL-C levels, clinical presentations and resistance to anti-lipid treatment regimen (ACE inhibitors, β-blockers, ezetimibe, statins) of the FH patients was observed. This loss-of-function mutation is predicted to alter the free energy dynamics of the transcribed RNA, leading to its instability. Protein structural mapping has predicted that this non-sense mutation eliminates key functional domains in LDLR, which are essential for the receptor recycling and LDL particle binding. In conclusion, by combining genetics and structural bioinformatics approaches, this study identified and characterized a very rare FH causative LDLR pathogenic variant determining both clinical presentation and resistance to anti-lipid drug treatment.
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