Genetics
Lp(a) ability to bind lysine varies because LDL and fibronectin mask its binding site, not because of the particle itself, a mechanistic study (J Lipid Res 2000)
Original title: Characterization of the basis of lipoprotein [a] lysine-binding heterogeneity
This study investigated why only a fraction of plasma Lp(a) (Lp[a]-Lys+) binds lysine-Sepharose in vitro, examining six individuals whose Lp(a)-Lys+ fraction ranged from about 37% to 48%. Purifying Lp(a) by density gradient ultracentrifugation, gel filtration and ion-exchange chromatography progressively increased the Lys+ fraction, while adding purified LDL or fibronectin to purified Lp(a) at a 1:1 molar ratio reduced the Lys+ fraction (maximal decreases of 34% and 20%, respectively), with both together reducing it further (45% maximally). Using recombinant apo(a), a 4-fold molar excess of LDL or fibronectin similarly reduced the Lys+ fraction by 49% and 23%. The findings suggest Lp(a) lysine-binding heterogeneity largely results from LDL and fibronectin masking the lysine-binding site in apo(a) kringle IV type 10, rather than being an intrinsic property of the lipoprotein itself.
Original abstract
Although elevated plasma concentrations of lipoprotein [a] (Lp[a]) are considered to be a risk factor for atherosclerosis, the mechanisms by which Lp[a] mediates its pathogenic effects have not been conclusively determined. The apolipoprotein [a] (apo[a]) component of Lp[a] confers unique structural properties to this lipoprotein, including the ability to bind to lysine residues in biological substrates. It has been shown, however, that only a fraction of plasma Lp[a] (Lp[a]-Lys(+)) binds to lysine-Sepharose in vitro. The nature of the non-lysine-binding Lp[a] fraction in plasma (Lp[a]-Lys(-)) is currently unknown. In the present study, the Lp[a]-Lys(+) fraction was determined in the plasma of six unrelated individuals; the Lp[a]-Lys(+) fraction in these plasma samples ranged from approximately 37 to approximately 48%. Interestingly, purification of the Lp[a] by density gradient ultracentrifugation followed by gel filtration and ion-exchange chromatography resulted in progressive increases in the Lp[a]-Lys(+) fraction. Addition of either purified low density lipoprotein (LDL) or fibronectin to the purified Lp[a] at a 1:1 molar ratio reduced the Lp[a]-Lys(+) fraction (maximal decrease of 34 and 20%, respectively) whereas addition of both fibronectin and LDL to the purified Lp[a] resulted in a further decrease (45% maximally) in this fraction. Similar results were obtained by using a recombinant expression system for apo[a]: addition of a 4-fold molar excess of either LDL or fibronectin to conditioned medium containing metabolically labeled recombinant apo[a] reduced the Lys(+) fraction by 49 and 23%, respectively. Taken together, our data suggest that the lysine-binding heterogeneity of plasma Lp[a] is not primarily an intrinsic property of the lipoprotein, but rather results in large part from its ability to noncovalently associate with abundant plasma components such as LDL and fibronectin. These interactions appear to mask the lysine-binding site in apo[a] kringle IV type 10, which mediates the interaction of Lp[a] with lysine-Sepharose. The contribution of these interactions to the function of Lp[a] in vivo remains to be investigated.
Summary written by lp-a.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.