Genetics
A rapid qPCR method replaces laborious electrophoresis for counting Lp(a) gene repeats, a methods study (J Lipid Res 2009)
Original title: Determination of lipoprotein(a) kringle repeat number from genomic DNA: copy number variation genotyping using qPCR
This study developed a quantitative PCR (qPCR) method to determine kringle IV type 2 (KIV2) repeat number in the LPA gene from genomic DNA, as an alternative to laborious electrophoresis-based methods. KIV2 repeat number measured by qPCR correlated with apo(a) isoform size by immunoblotting (rs=0.50, P<1x10-6) and with plasma Lp(a) concentration (rs=0.30, P<1x10-6). The findings show this qPCR technique enables rapid evaluation of apo(a) size from genomic DNA, providing an additional genomic variable alongside LPA SNPs for studying the genetic determinants of Lp(a) in cardiovascular genetic epidemiology.
Original abstract
Plasma lipoprotein(a) [Lp(a)] concentration is related to risk of cardiovascular disease. The defining protein component of Lp(a) particles, apolipoprotein(a) [apo(a)], is encoded by the LPA gene. Apo(a) is extremely heterogeneous in size due to a common copy number variation, leading to a variable number of kringle-IV type 2 (KIV2)-like domains. Alleles with fewer KIV2 repeats, encoding smaller apo(a) isoforms, are associated with higher plasma Lp(a) concentrations. Two principal methods to detect variation in KIV2 repeat number are electrophoresis with immunoblotting to detect apo(a) protein isoforms or pulse-field electrophoresis of unamplified genomic DNA to detect the variation of the LPA gene. Both methods are technically challenging, laborious, and time consuming. Here, we report a rapid method to determine the number of KIV2 repeats in LPA from genomic DNA using quantitative real-time polymerase chain reaction (qPCR). With qPCR, we found KIV2 repeat number was correlated with both apo(a) isoform size as determined by immunoblotting (r(s) = 0.50, P < 1 x 10(-6)) and with plasma Lp(a) concentration (r(s) = 0.30, P < 1 x 10(-6)). The qPCR technique permits rapid evaluation of apo(a) size from genomic DNA, and thus would provide an adjunctive genomic variable, in addition to LPA single nucleotide polymorphisms, for evaluating the genetic determinants of plasma Lp(a) concentration in genetic epidemiology studies of cardiovascular disease outcomes.
Summary written by lp-a.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.