Key result
Adenovirus-mediated transfer of apoE4 (2x10^9 pfu) and human LCAT (5x10^8 pfu) in knockout mice showed ABCA1 is essential for generating apoE-containing HDL and LCAT for its maturation.
ApoE has a dual functionality, participating in the biogenesis of HDL-sized particles via an ABCA1- and LCAT-dependent pathway, which may account for some of its atheroprotective effects.
May partly explain apoE atheroprotection via HDL; leaves open human relevance pending clinical studies.
We have investigated the ability of apoE (apolipoprotein E) to participate in the biogenesis of HDL (high-density lipoprotein) particles in vivo using adenovirus-mediated gene transfer in apoA-I-/- (apolipoprotein A-I) or ABCA1-/- (ATP-binding cassette A1) mice. Infection of apoA-I-/- mice with 2x10(9) pfu (plaque-forming units) of an apoE4-expressing adenovirus increased both HDL and the triacylglycerol-rich VLDL (very-low-density lipoprotein)/IDL (intermediate-density lipoprotein)/LDL (low-density lipoprotein) fraction and generated discoidal HDL particles. ABCA1-/- mice treated similarly failed to form HDL particles, suggesting that ABCA1 is essential for the generation of apoE-containing HDL. Combined infection of apoA-I-/- mice with a mixture of adenoviruses expressing both apoE4 (2x10(9) pfu) and human LCAT (lecithin:cholesterol acyltransferase) (5x10(8) pfu) cleared the triacylglycerol-rich lipoproteins, increased HDL and converted the discoidal HDL into spherical HDL. Similarly, co-infection of apoE-/- mice with apoE4 and human LCAT corrected the hypercholesterolaemia and generated spherical particles, suggesting that LCAT is essential for the maturation of apoE-containing HDL. Overall, the findings indicate that apoE has a dual functionality. In addition to its documented functions in the clearance of triacylglycerol-rich lipoproteins, it participates in the biogenesis of HDL-sized apoE-containing particles. HDL particles generated by this pathway may account at least for some of the atheroprotective functions of apoE.
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Kypreos et al. (2007) studied apoA-I-/-, ABCA1-/-, and apoE-/- mice. apoE4 and human LCAT adenovirus was evaluated on biogenesis of HDL particles. Adenovirus-mediated transfer of apoE4 (2x10^9 pfu) and human LCAT (5x10^8 pfu) in knockout mice showed ABCA1 is essential for generating apoE-containing HDL and LCAT for its maturation.
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