RNA therapeutics
Adding a specific phospholipid to LDL blocks Lp(a) assembly and transiently lowers Lp(a) by 18.6% in mice, a mechanistic study (J Lipid Res 2009)
Original title: Dimyristoylphosphotidylcholine induces conformational changes in apoB that lowers lipoprotein(a)
This study tested whether altering apoB conformation by adding phospholipids to LDL affects Lp(a) assembly, which normally occurs via lysine binding between apoB and apo(a) followed by disulphide bond formation. Adding dimyristoylphosphatidylcholine (DMPC) to isolated LDL decreased apoB alpha-helical content and increased antibody reactivity at the apoB C-terminus, reducing the modified LDL ability to form Lp(a) in vitro. Administering DMPC to Lp(a) transgenic mice produced a significant but transient 18.6% decrease in Lp(a) at 2 hours (P<0.001), coinciding with DMPC binding to plasma LDL. The findings show altering apoB conformation in its C-terminal region reduces Lp(a) formation both in vitro and in vivo, suggesting LDL surface phospholipid manipulation as a way to lower Lp(a).
Original abstract
Lipoprotein(a) [Lp(a)] is assembled by the binding of apolipoprotein B (apoB) lysine residues on LDL to lysine binding sites in apolipoprotein(a) [apo(a)] and the subsequent formation of a disulphide bond between apoB and apo(a). In this study, we induced changes in apoB conformation by adding phospholipids to LDL and tested the effect of the altered apoB conformation on Lp(a) assembly. The addition of dimyristoylphosphatidylcholine (DMPC) to isolated LDL induced a decrease in the alpha-helical content of apoB and increased the immunoreactivity of the apoB C terminus toward monoclonal antibodies in the region. These conformational changes were associated with a reduction in the ability of the DMPC-modified LDL to form Lp(a) in in vitro assays. Furthermore, administration of DMPC to Lp(a) transgenic mice lead to a significant but transient decrease in Lp(a) levels (18.6% decrease at 2 h, P < 0.001) which coincided with the association of DMPC with LDL in plasma. Our study shows that changes in apoB conformation in the C-terminal region alter the exposure of sequences required for Lp(a) assembly and reduce the formation of Lp(a) both in vitro and in vivo. We conclude that manipulation of LDL surface phospholipids alters Lp(a) levels.
Summary written by lp-a.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.