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1.
J Lipid Res ; 56(10): 1993-2001, 2015 Oct.
Article in English | MEDLINE | ID: mdl-26255038

ABSTRACT

A low level of HDL cholesterol (HDL-C) is a common clinical scenario and an important marker for increased cardiovascular risk. Many patients with very low or very high HDL-C have a rare mutation in one of several genes, but identification of the molecular abnormality in patients with extreme HDL-C is rarely performed in clinical practice. We investigated the accuracy and diagnostic yield of a targeted next-generation sequencing (NGS) assay for extreme levels of HDL-C. We developed a targeted NGS panel to capture the exons, intron/exon boundaries, and untranslated regions of 26 genes with highly penetrant effects on plasma lipid levels. We sequenced 141 patients with extreme HDL-C levels and prioritized variants in accordance with medical genetics guidelines. We identified 35 pathogenic and probably pathogenic variants in HDL genes, including 21 novel variants, and performed functional validation on a subset of these. Overall, a molecular diagnosis was established in 35.9% of patients with low HDL-C and 5.2% with high HDL-C, and all prioritized variants identified by NGS were confirmed by Sanger sequencing. Our results suggest that a molecular diagnosis can be identified in a substantial proportion of patients with low HDL-C using targeted NGS.


Subject(s)
ATP Binding Cassette Transporter 1/genetics , Cardiovascular Diseases/genetics , Cholesterol, HDL/blood , Cholesterol, HDL/genetics , High-Throughput Nucleotide Sequencing/methods , Hypercholesterolemia/blood , Hypercholesterolemia/genetics , ATP Binding Cassette Transporter 1/blood , Alleles , Cardiovascular Diseases/blood , Cardiovascular Diseases/diagnosis , Exons , Female , Genetic Association Studies , Humans , Introns , Male , Middle Aged , Risk Factors
2.
J Clin Lipidol ; 12(1): 116-121, 2018.
Article in English | MEDLINE | ID: mdl-29150341

ABSTRACT

BACKGROUND: A low level of high-density lipoprotein cholesterol (HDL-C) is a common clinical scenario and poses challenges for management. Many patients with low HDL-C harbor a damaging mutation in ABCA1 or APOA1, but the clinical implications of genetic testing for these mutations are unclear. OBJECTIVE: The purpose of this study was to investigate the prevalence of clinical or subclinical atherosclerosis among patients with low HDL-C due to a mutation in ABCA1 or APOA1, compared with patients with low HDL-C without such a mutation. METHODS: We performed targeted next-generation sequencing to identify mutations in ABCA1 and APOA1 in 72 patients with HDL-C levels below the 10th percentile. We examined the prevalence of clinical atherosclerosis and subclinical atherosclerosis in these patients. We also measured cholesterol efflux capacity (CEC) in plasma. RESULTS: We identified a known disease-causing or likely pathogenic variant in the ABCA1 or APOA1 genes in 22% of patients with low HDL-C. Eighty-three percent of patients with a damaging mutation in ABCA1 or APOA1 had evidence of atherosclerosis compared with 38.6% with low HDL-C without such a mutation (P = .04). Patients with damaging mutations in ABCA1 or APOA1 had lower CEC compared with patients without a mutation (25.9% vs 30.1%). CONCLUSION: The presence of a damaging mutation in ABCA1 or APOA1 confers an increased risk of atherosclerosis relative to patients without such a mutation at a comparable level of HDL cholesterol, possibly because of a reduction in CEC.


Subject(s)
ATP Binding Cassette Transporter 1/genetics , Apolipoprotein A-I/genetics , Atherosclerosis/pathology , Apolipoprotein A-I/blood , Atherosclerosis/epidemiology , Atherosclerosis/genetics , Canada/epidemiology , Cholesterol/metabolism , Cholesterol, HDL/blood , Female , High-Throughput Nucleotide Sequencing , Humans , Male , Middle Aged , Odds Ratio , Polymorphism, Single Nucleotide , Prevalence , Sequence Analysis, DNA
3.
Sci Rep ; 6: 25333, 2016 05 04.
Article in English | MEDLINE | ID: mdl-27142468

ABSTRACT

Doxorubicin is a highly efficacious anti-cancer drug but causes cardiotoxicity in many patients. The mechanisms of doxorubicin-induced cardiotoxicity (DIC) remain incompletely understood. We investigated the characteristics and molecular mechanisms of DIC in human pluripotent stem cell-derived cardiomyocytes (hPSC-CMs). We found that doxorubicin causes dose-dependent increases in apoptotic and necrotic cell death, reactive oxygen species production, mitochondrial dysfunction and increased intracellular calcium concentration. We characterized genome-wide changes in gene expression caused by doxorubicin using RNA-seq, as well as electrophysiological abnormalities caused by doxorubicin with multi-electrode array technology. Finally, we show that CRISPR-Cas9-mediated disruption of TOP2B, a gene implicated in DIC in mouse studies, significantly reduces the sensitivity of hPSC-CMs to doxorubicin-induced double stranded DNA breaks and cell death. These data establish a human cellular model of DIC that recapitulates many of the cardinal features of this adverse drug reaction and could enable screening for protective agents against DIC as well as assessment of genetic variants involved in doxorubicin response.


Subject(s)
Antibiotics, Antineoplastic/adverse effects , Cardiotoxicity , Doxorubicin/adverse effects , Models, Biological , Myocytes, Cardiac/drug effects , Myocytes, Cardiac/physiology , Cell Survival/drug effects , Cells, Cultured , Electrophysiological Phenomena/drug effects , Gene Expression Profiling , Humans , Pluripotent Stem Cells/drug effects , Pluripotent Stem Cells/physiology
4.
JIMD Rep ; 18: 51-62, 2015.
Article in English | MEDLINE | ID: mdl-25308558

ABSTRACT

Tangier disease is a rare, autosomal recessive disorder caused by mutations in the ABCA1 gene and is characterized by near absence of plasma high-density lipoprotein cholesterol, accumulation of cholesterol in multiple tissues, peripheral neuropathy, and accelerated atherosclerosis. Here we report three new kindreds with Tangier disease harboring both known and novel mutations in ABCA1. One patient was identified to be homozygous for a nonsense mutation, p.Gln1038*. In a remarkably large Tangier disease pedigree with four affected siblings, we identified compound heterozygosity for previously reported missense variants, p.Arg937Val and p.Thr940Met, and show that both of these mutations result in significantly impaired cholesterol efflux in transfected cells. In a third pedigree, the proband was identified to be compound heterozygous for two novel mutations, a frameshift (p.Ile1200Hisfs*4) and an intronic variant (c.4176-11T>G), that lead to the creation of a cryptic splice site acceptor and premature truncation, p.Ser1392Argfs*6. We demonstrate that this mutation arose de novo, the first demonstration of a pathogenic de novo mutation in ABCA1 associated with Tangier disease. We also report results of glucose tolerance testing in a Tangier disease kindred for the first time, showing a gene-dose relationship between ABCA1 activity and glucose tolerance and suggesting that Tangier disease patients may have substantially impaired islet function. Our findings provide insight into the diverse phenotypic manifestations of this rare disorder, expand the list of pathogenic mutations in ABCA1, and increase our understanding of how specific mutations in this gene lead to abnormal cellular and physiological phenotypes.

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