A1 Vertaisarvioitu alkuperäisartikkeli tieteellisessä lehdessä

New evidence from plasma ceramides links apoE polymorphism to greater risk of coronary artery disease in Finnish adults




TekijätKarjalainen JP, Mononen N, Hutri-Kähönen N, Lehtimäki M, Hilvo M, Kauhanen D, Juonala M, Viikari J, Kähönen M, Raitakari O, Laaksonen R, Lehtimäki T

KustantajaAMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC

Julkaisuvuosi2019

JournalJournal of Lipid Research

Tietokannassa oleva lehden nimiJOURNAL OF LIPID RESEARCH

Lehden akronyymiJ LIPID RES

Vuosikerta60

Numero9

Aloitussivu1622

Lopetussivu1629

Sivujen määrä8

ISSN0022-2275

eISSN1539-7262

DOIhttps://doi.org/10.1194/jlr.M092809

Rinnakkaistallenteen osoitehttps://research.utu.fi/converis/portal/detail/Publication/42571877


Tiivistelmä
apoE, a key regulator of plasma lipids, mediates altered functionalities in lipoprotein metabolism and thus affects the risk of coronary artery disease (CAD). The significance of different apoE polymorphisms remains unclear; although the epsilon 4 allele is clearly associated with increased cholesterol levels (which inform CAD risk), direct studies about apoE polymorphisms on CAD risk and development have yielded controversial results. Furthermore, certain species of ceramides-complex lipids abundant in plasma LDL-are markers of increased risk of myocardial infarction and cardiovascular death. Using a high-throughput MS approach, we quantified 30 molecular plasma ceramide species from a cohort of 2,160 apoE-genotyped (rs7412, rs429358) young adults enrolled in the population-based Cardiovascular Risk in Young Finns Study. We then searched this lipidome data set to identify new indications of pathways influenced by apoE polymorphisms and possibly related to CAD risk. This approach revealed a previously unreported association between apoE polymorphism and a consistently documented high-risk CAD marker, Cer(d18:1/16:0). Compared with the apoE epsilon 3/3 reference group, plasma levels of apoE epsilon 4 were elevated and those of apoE epsilon 2 were lowered in all subjects without evidence of apoE-by-sex interactions. apoE associated with seven ceramides that are connected to atherogenically potent macrophages and/or lipoprotein particles; these associations could indicate a plausible linkage between apoE polymorphism and ceramide metabolism, leading to adverse plasma LDL metabolism and atherogenesis. In conclusion, new evidence from plasma ceramides links apoE polymorphism with an increased risk of CAD and extends our understanding of the role of apoE in health and disease.

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