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Updated: Jul 23, 2025

A High-Throughput Luciferase Assay to Evaluate Proteolysis of the Single-Turnover Protease PCSK9
Published on: August 28, 2018
Protein structural insights into a rare PCSK9 gain-of-function variant (R496W) causing familial hypercholesterolemia
Noor Ahmad Shaik1,2, Najla Al-Shehri3, Mohammad Athar4,5
1Department of Genetic Medicine, Faculty of Medicine, King Abdulaziz University, Jeddah, Saudi Arabia.
Insights
A rare genetic variant in the PCSK9 gene was identified as the cause of Familial Hypercholesterolemia (FH) in a Saudi family. This discovery enhances understanding of FH genetics in the region and aids personalized medicine.
Area of Science:
- Genetics
- Cardiovascular Disease
- Biochemistry
Background:
- Familial Hypercholesterolemia (FH) is an underdiagnosed genetic disorder linked to early cardiovascular death.
- Limited genetic data exists for Arab populations with FH.
Purpose of the Study:
- To determine the genetic cause of FH in a Saudi family.
- To utilize whole exome sequencing (WES) and bioinformatics for genetic analysis.
Main Methods:
- Whole exome sequencing (WES) was performed on a Saudi family with FH.
- Bioinformatic analysis identified a novel PCSK9 gene variant (R496W).
- Variant pathogenicity was assessed using ACMG guidelines and computational modeling.
Main Results:
- A rare heterozygous gain-of-function variant, PCSK9 (R496W), was identified as the cause of FH in the family.
- The variant was absent in healthy controls and unreported in population databases.
- Computational analysis indicated the variant destabilizes PCSK9 protein and affects its binding to LDLR and Alirocumab.
Conclusions:
- The identified PCSK9 (R496W) variant expands the understanding of FH genetic basis in Saudi Arabia.
- This study offers computational insights into genotype-phenotype correlations for PCSK9 variants.
- Findings contribute to the future development of personalized medicine for FH patients.
Abstract:
Familial hypercholesterolemia (FH) is a globally underdiagnosed genetic condition associated with premature cardiovascular death. The genetic etiology data on Arab FH patients is scarce. Therefore, this study aimed to identify the genetic basis of FH in a Saudi family using whole exome sequencing (WES) and multidimensional bioinformatic analysis. Our WES findings revealed a rare heterozygous gain-of-function variant (R496W) in the exon 9 of the PCSK9 gene as a causal factor for FH in this family. This variant was absent in healthy relatives of the proband and 200 healthy normolipidemic controls from Saudi Arabia. Furthermore, this variant has not been previously reported in various regional and global population genomic variant databases. Interestingly, this variant is classified as "likely pathogenic" (PP5) based on the variant interpretation guidelines of the American College of Medical Genetics (ACMG). Computational functional characterization suggested that this variant could destabilize the native PCSK9 protein and alter its secondary and tertiary structural features. In addition, this variant was predicted to negatively influence its ligand-binding ability with LDLR and Alirocumab antibody molecules. This rare PCSK9 (R496W) variant is likely to expand our understanding of the genetic basis of FH in Saudi Arabia. This study also provides computational structural insights into the genotype-protein phenotype relationship of PCSK9 pathogenic variants and contributes to the development of personalized medicine for FH patients in the future.
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