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Updated: Jul 16, 2026

A Familial Hypercholesterolemia Human Liver Chimeric Mouse Model Using Induced Pluripotent Stem Cell-derived Hepatocytes
Published on: September 15, 2018
Mechanisms of disease: genetic causes of familial hypercholesterolemia
Anne K Soutar1, Rossi P Naoumova
1Lipoprotein Group, MRC Clinical Sciences Centre, Faculty of Medicine, Imperial College London, Hammersmith Hospital, London, UK. anne.soutar@csc.mrc.ac.uk
Insights
Familial hypercholesterolemia (FH) is a genetic disorder causing high LDL cholesterol. Gain-of-function mutations in PCSK9 are a newly identified cause, highlighting PCSK9 as a drug target.
Area of Science:
- Genetics
- Biochemistry
- Cardiovascular Medicine
Background:
- Familial hypercholesterolemia (FH) is characterized by elevated serum LDL cholesterol, leading to premature atherosclerosis and coronary heart disease.
- FH typically results from defects in the LDL-receptor pathway, involving mutations in LDLR or APOB genes.
- Autosomal recessive FH and FH linked to LDLRAP1 mutations have also been identified.
Purpose of the Study:
- To review the genetic basis of Familial hypercholesterolemia (FH).
- To discuss the role of PCSK9 in FH pathogenesis and its potential as a therapeutic target.
Main Methods:
- Literature review of genetic defects causing FH.
- Analysis of the role of PCSK9 in LDL metabolism and receptor regulation.
Main Results:
- Defects in LDLR, APOB, LDLRAP1, and PCSK9 genes cause FH.
- Gain-of-function mutations in PCSK9 are associated with severe hypercholesterolemia.
- PCSK9 normally downregulates LDL receptors; its dysregulation contributes to FH.
Conclusions:
- PCSK9 is a significant genetic factor in FH.
- PCSK9 represents a promising target for novel lipid-lowering therapies.
- Targeting PCSK9 may offer additive benefits to existing statin treatments.
Abstract:
Familial hypercholesterolemia (FH) is characterized by raised serum LDL cholesterol levels, which result in excess deposition of cholesterol in tissues, leading to accelerated atherosclerosis and increased risk of premature coronary heart disease. FH results from defects in the hepatic uptake and degradation of LDL via the LDL-receptor pathway, commonly caused by a loss-of-function mutation in the LDL-receptor gene (LDLR) or by a mutation in the gene encoding apolipoprotein B (APOB). FH is primarily an autosomal dominant disorder with a gene-dosage effect. An autosomal recessive form of FH caused by loss-of-function mutations in LDLRAP1, which encodes a protein required for clathrin-mediated internalization of the LDL receptor by liver cells, has also been documented. The most recent addition to the database of genes in which defects cause FH is one encoding a member of the proprotein convertase family, PCSK9. Rare dominant gain-of-function mutations in PCSK9 cosegregate with hypercholesterolemia, and one mutation is associated with a particularly severe FH phenotype. Expression of PCSK9 normally downregulates the LDL-receptor pathway by indirectly causing degradation of LDL-receptor protein, and loss-of-function mutations in PCSK9 result in low plasma LDL levels. Thus, PCSK9 is an attractive target for new drugs aimed at lowering serum LDL cholesterol, which should have additive lipid-lowering effects to the statins currently used.
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