Genetics
A specific LPA gene haplotype raises heart attack risk in women independent of Lp(a) level, a German study of 834 MI patients and 1548 controls (Circulation 2003)
Original title: Association of polymorphisms of the apolipoprotein(a) gene with lipoprotein(a) levels and myocardial infarction
This study examined LPA gene pentanucleotide (PN) repeat and kringle IV (K4) repeat polymorphisms and Lp(a) levels in 834 myocardial infarction (MI) patients (38% women) and 1548 population-based controls. Lp(a) was inversely related to K4 and PN repeat numbers, though the PN effect was limited to those with small Lp(a) particles (8 or fewer PN repeats: 66.1 mg/dL vs more than 8 PN repeats: 8.7 mg/dL, P<0.0001). MI odds were elevated in people with small Lp(a) particles (22 or fewer K4 repeats; odds ratio 1.47 in men, 1.69 in women, P<0.002). In women, the frequent haplotype combining 8 or fewer PN and 22 or fewer K4 repeats, linked to high levels of small Lp(a) particles, carried an elevated MI odds ratio of 1.79 (P=0.01) independent of Lp(a) serum concentration. The findings show K4 and PN repeat polymorphisms largely explain Lp(a) variability, and a specific haplotype predicts MI in women independent of Lp(a) concentration, suggesting particle size itself may modulate risk.
Original abstract
Background: Serum lipoprotein(a) [Lp(a)] concentration is largely determined by variability at the apolipoprotein(a) gene locus. Most prominent effects relate to polymorphisms in the promoter (a pentanucleotide [PN] repeat) and coding regions (a kringle IV [K4] repeat), the latter of which also affects Lp(a) particle size. The impact of these polymorphisms on cardiovascular risk is poorly understood.
Methods And Results: We studied both polymorphisms and Lp(a) levels in 834 registry-based myocardial infarction (MI) patients (38% women) and 1548 population-based controls. Lp(a) concentrations were inversely related with the numbers of K4 and PN repeats. However, the effect of the PN polymorphism was restricted to subjects producing small Lp(a) particles (<or=8 PN 66.1 mg/dL versus >8 PN 8.7 mg/dL; P<0.0001). The odds to present with MI were elevated in individuals producing small Lp(a) particles (<or=22 K4 repeats; OR 1.47 for men and 1.69 for women; P<0.002) and in women with <or=8 PN repeats (OR 1.46, P=0.009). Interestingly, in women, the frequent haplotype with <or=8 PN and <or=22 K4 repeats, which is related to high levels of small Lp(a) particles, resulted in an elevated OR for MI (1.79; P=0.01) independently of Lp(a) serum concentration.
Conclusions: The K4 and PN repeat polymorphisms largely explain the high variability of serum Lp(a) levels. A haplotype with <or=8 PN and <or=22 K4 repeats is characterized by high concentrations of small Lp(a) particles. Our observation that this haplotype was associated with MI independently of Lp(a) serum levels may suggest that Lp(a) particle size in addition to its concentration may modulate MI risk in women.
Summary written by lp-a.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.