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Updated: Apr 21, 2026

Targeted Next-generation Sequencing and Bioinformatics Pipeline to Evaluate Genetic Determinants of Constitutional Disease
Published on: April 4, 2018
Inactivating mutations in NPC1L1 and protection from coronary heart disease
, Nathan O Stitziel1, Hong-Hee Won
1Cardiovascular Division, Department of Medicine, Division of Statistical Genomics, Washington University School of Medicine, St. Louis, MO, USA.
Background:
Ezetimibe lowers plasma levels of low-density lipoprotein (LDL) cholesterol by inhibiting the activity of the Niemann-Pick C1-like 1 (NPC1L1) protein. However, whether such inhibition reduces the risk of coronary heart disease is not known. Human mutations that inactivate a gene encoding a drug target can mimic the action of an inhibitory drug and thus can be used to infer potential effects of that drug.
Methods:
We sequenced the exons of NPC1L1 in 7364 patients with coronary heart disease and in 14,728 controls without such disease who were of European, African, or South Asian ancestry. We identified carriers of inactivating mutations (nonsense, splice-site, or frameshift mutations). In addition, we genotyped a specific inactivating mutation (p.Arg406X) in 22,590 patients with coronary heart disease and in 68,412 controls. We tested the association between the presence of an inactivating mutation and both plasma lipid levels and the risk of coronary heart disease.
Results:
With sequencing, we identified 15 distinct NPC1L1 inactivating mutations; approximately 1 in every 650 persons was a heterozygous carrier for 1 of these mutations. Heterozygous carriers of NPC1L1 inactivating mutations had a mean LDL cholesterol level that was 12 mg per deciliter (0.31 mmol per liter) lower than that in noncarriers (P=0.04). Carrier status was associated with a relative reduction of 53% in the risk of coronary heart disease (odds ratio for carriers, 0.47; 95% confidence interval, 0.25 to 0.87; P=0.008). In total, only 11 of 29,954 patients with coronary heart disease had an inactivating mutation (carrier frequency, 0.04%) in contrast to 71 of 83,140 controls (carrier frequency, 0.09%).
Conclusions:
Naturally occurring mutations that disrupt NPC1L1 function were found to be associated with reduced plasma LDL cholesterol levels and a reduced risk of coronary heart disease. (Funded by the National Institutes of Health and others.).
Insights
Naturally occurring NPC1L1 gene mutations lower LDL cholesterol and reduce coronary heart disease risk. This supports targeting the NPC1L1 protein, like with ezetimibe, for cardiovascular disease prevention.
Area of Science:
- Genetics and Cardiovascular Medicine
- Pharmacogenomics
- Lipid Metabolism
Background:
- Ezetimibe inhibits the Niemann-Pick C1-like 1 (NPC1L1) protein to reduce LDL cholesterol.
- The impact of NPC1L1 inhibition on coronary heart disease (CHD) risk remains unclear.
- Human genetic mutations offer insights into drug target effects.
Purpose of the Study:
- To investigate the association between NPC1L1 inactivating mutations and plasma lipid levels.
- To determine if NPC1L1 inactivating mutations reduce the risk of coronary heart disease.
- To leverage genetic variation to infer the clinical utility of NPC1L1 inhibition.
Main Methods:
- Sequencing of NPC1L1 exons in 7,364 CHD patients and 14,728 controls across diverse ancestries.
- Genotyping of a specific inactivating mutation (p.Arg406X) in a larger cohort (22,590 CHD patients, 68,412 controls).
- Analysis of the association between NPC1L1 inactivating mutations, lipid levels, and CHD risk.
Main Results:
- Identified 15 distinct NPC1L1 inactivating mutations; carriers occurred in ~1 in 650 individuals.
- Heterozygous carriers showed a mean 12 mg/dL lower LDL cholesterol (P=0.04).
- Carrier status was linked to a 53% relative reduction in CHD risk (OR, 0.47; P=0.008).
Conclusions:
- Naturally occurring NPC1L1 loss-of-function mutations are associated with lower LDL cholesterol.
- These mutations correlate with a significantly reduced risk of coronary heart disease.
- Findings support NPC1L1 as a therapeutic target for cardiovascular disease prevention.
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