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Genome-wide association study and targeted metabolomics identifies sex-specific association of CPS1 with coronary artery disease
Journal article   Open access

Genome-wide association study and targeted metabolomics identifies sex-specific association of CPS1 with coronary artery disease

J. A. Hartiala, W. H. Wilson Tang, Z. Wang, A. L. Crow, A. F. R. Stewart, R. Roberts, R. McPherson, J. Erdmann, C. Willenborg, S. L. Hazen, …
Nature Communications, Vol.7
2016

Abstract

betaine betaine homocysteine methyltransferase carbamoyl phosphate carbamoyl phosphate synthase choline citrulline dimethylglycine genomic DNA glycine glycine cleavage system homocysteine methionine mitochondrial enzyme sarcosine trimethylamine urea amino acid cardiovascular disease chromosome enzyme activity gene expression genetic analysis metabolism metabolite rodent adult amino acid blood level angiocardiography Article cardiovascular risk catabolism catalysis chromosome 16q chromosome 1q chromosome 2q chromosome 5q coronary artery disease electrocardiogram female gene linkage disequilibrium gene locus genetic association genetic risk genetic variability genotype heredity human intron major clinical study male metabolomics phenotype sex difference single nucleotide polymorphism urea cycle blood gene expression regulation genetic predisposition genetics genome-wide association study physiology sex factor Mus Carbamoyl-Phosphate Synthase (Ammonia) Coronary Disease Gene Expression Regulation, Enzymologic Genetic Predisposition to Disease Humans Polymorphism, Single Nucleotide Sex Factors
url
https://doi.org/10.1038/ncomms10558View
Published (Version of record) Open

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