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1.
Arterioscler Thromb Vasc Biol ; 32(1): 131-9, 2012 Jan.
Artículo en Inglés | MEDLINE | ID: mdl-21979433

RESUMEN

OBJECTIVE: Both HDLs and their major protein constituent apolipoprotein A-I (apoA-I) are transported through aortic endothelial cells. The knock-down of the ATP-binding cassette transporters A1 (ABCA1), G1 (ABCG1), and of the scavenger receptor-BI (SR-BI) diminishes but does not completely block the transport of apoA-I or HDL, so that other receptors appear to be involved. The ectopic ß-chain of F(0)F(1) ATPase has been previously characterized as an apoA-I receptor, triggering HDL internalization in hepatocytes. METHODS AND RESULTS: The ectopic presence of the ß-chain of F(0)F(1) ATPase on the surface of endothelial cells was confirmed by cell surface biotinylation. RNA-interference and the F(0)F(1) ATPase inhibitory peptide IF(1) reduced cell binding of apoA-I but not HDL, as well as association and transendothelial transport of both apoA-I and HDL. Furthermore, apoA-I stimulated F(0)F(1) ATPase catalyzed ATP hydrolysis. The generated ADP as well as apoA-I stimulated the binding, cell association, and internalization of HDL. Both in the presence and absence of ADP inhibition of the purinergic receptor P2Y(12) but not P2Y(1) decreased the cell association of apoA-I and HDL. Coinhibition of ß-ATPase and ABCA1 had no additive effects on the cell association and transport of apoA-I. Reduced cell association of HDL by ß-ATPase inhibition was not further decreased by additional knock-down of ABCG1 or SR-BI. CONCLUSIONS: Binding of apoA-I to ectopic F(0)F(1) ATPase triggers the generation of ADP, which via activation of the purinergic receptor P2Y(12) stimulates the uptake and transport of HDL and initially lipid-free apoA-I by endothelial cells.


Asunto(s)
Apolipoproteína A-I/metabolismo , Células Endoteliales/metabolismo , Lipoproteínas HDL/metabolismo , ATPasas de Translocación de Protón/química , ATPasas de Translocación de Protón/metabolismo , Transportadoras de Casetes de Unión a ATP/metabolismo , Adenosina Difosfato/metabolismo , Animales , Aorta/citología , Aorta/metabolismo , Secuencia de Bases , Antígenos CD36/metabolismo , Bovinos , Membrana Celular/metabolismo , Células Cultivadas , Endocitosis , Modelos Biológicos , ATPasas de Translocación de Protón/antagonistas & inhibidores , ATPasas de Translocación de Protón/genética , ARN Interferente Pequeño/genética , Receptores Purinérgicos P2Y12/metabolismo , Transcitosis
2.
Biochim Biophys Acta ; 1811(12): 1115-23, 2011 Dec.
Artículo en Inglés | MEDLINE | ID: mdl-21930241

RESUMEN

Apolipoprotein A-I (apoA-I) exerts many potentially anti-atherogenic properties and is therefore attractive for prevention and therapy of coronary heart disease. Since induction of apoA-I production by small molecules has turned out as difficult, application of exogenous apoA-I is pursued as an alternative therapeutic option. To counteract fast renal filtration of apoA-I, a trimeric high-molecular weight variant of apoA-I (TripA) was produced by recombinant technology. We compared TripA and apoA-I for important properties in reverse cholesterol transport. Reconstituted high-density lipoproteins (rHDL) containing TripA or apoA-I together with palmitoyl-2-oleyl-phosphatidylcholine (POPC) differed slightly by size. Compared to apoA-I, TripA activated lecithin:cholesterol acyltransferase (LCAT) with similar maximal velocity but concentration leading to half maximal velocity was slightly reduced (K(m)=2.1±0.3µg/mL vs. 0.59±0.06µg/mL). Both in the lipid-free form and as part of rHDL, TripA elicited cholesterol efflux from THP1-derived macrophages with similar kinetic parameters and response to liver-X-receptor activation as apoA-I. Lipid-free TripA is bound and transported by aortic endothelial cells through mechanisms which are competed by apoA-I and TripA and inhibited by knock-down of ATP-binding cassette transporter (ABC) A1. Pre-formed TripA/POPC particles were bound and transported by endothelial cells through mechanisms which are competed by excess native HDL as well as reconstituted HDL containing either apoA-I or TripA and which involve ABCG1 and scavenger receptor B1 (SR-BI). In conclusion, apoA-I and TripA show similar in vitro properties which are important for reverse cholesterol transport. These findings are important for further development of TripA as an anti-atherosclerotic drug.


Asunto(s)
Apolipoproteína A-I/metabolismo , Aterosclerosis/metabolismo , Fármacos Cardiovasculares/metabolismo , Enfermedad Coronaria/metabolismo , Células Endoteliales/metabolismo , Proteínas Recombinantes/metabolismo , Transportadoras de Casetes de Unión a ATP/antagonistas & inhibidores , Transportadoras de Casetes de Unión a ATP/metabolismo , Animales , Aorta/citología , Aorta/efectos de los fármacos , Aorta/metabolismo , Apolipoproteína A-I/química , Apolipoproteína A-I/farmacología , Aterosclerosis/tratamiento farmacológico , Aterosclerosis/patología , Fármacos Cardiovasculares/química , Fármacos Cardiovasculares/farmacología , Bovinos , Enfermedad Coronaria/tratamiento farmacológico , Enfermedad Coronaria/patología , Células Endoteliales/citología , Células Endoteliales/efectos de los fármacos , Silenciador del Gen , Humanos , Cinética , Lipoproteínas HDL/química , Lipoproteínas HDL/metabolismo , Fosfatidilcolina-Esterol O-Aciltransferasa/metabolismo , Fosfatidilcolinas/metabolismo , Unión Proteica , Transporte de Proteínas/efectos de los fármacos , ARN Interferente Pequeño/genética , ARN Interferente Pequeño/metabolismo , Proteínas Recombinantes/química , Proteínas Recombinantes/farmacología
3.
J Biol Chem ; 286(10): 7744-7754, 2011 Mar 11.
Artículo en Inglés | MEDLINE | ID: mdl-21209084

RESUMEN

High density lipoproteins (HDL) and apolipoprotein A-I (apoA-I) must leave the circulation and pass the endothelium to exert their atheroprotective actions in the arterial wall. We previously demonstrated that the transendothelial transport of apoA-I involves ATP-binding cassette transporter (ABC) A1 and re-secretion of lipidated particles. Transendothelial transport of HDL is modulated by ABCG1 and the scavenger receptor BI (SR-BI). We hypothesize that apoA-I transport is started by the ABCA1-mediated generation of a lipidated particle which is then transported by ABCA1-independent pathways. To test this hypothesis we analyzed the endothelial binding and transport properties of initially lipid-free as well as prelipidated apoA-I mutants. Lipid-free apoA-I mutants with a defective carboxyl-terminal domain showed an 80% decreased specific binding and 90% decreased specific transport by aortic endothelial cells. After prior cell-free lipidation of the mutants, the resulting HDL-like particles were transported through endothelial cells by an ABCG1- and SR-BI-dependent process. ApoA-I mutants with deletions of either the amino terminus or both the amino and carboxyl termini showed dramatic increases in nonspecific binding but no specific binding or transport. Prior cell-free lipidation did not rescue these anomalies. Our findings of stringent structure-function relationships underline the specificity of transendothelial apoA-I transport and suggest that lipidation of initially lipid-free apoA-I is necessary but not sufficient for specific transendothelial transport. Our data also support the model of a two-step process for the transendothelial transport of apoA-I in which apoA-I is initially lipidated by ABCA1 and then further processed by ABCA1-independent mechanisms.


Asunto(s)
Aorta/metabolismo , Apolipoproteína A-I/metabolismo , Células Endoteliales/metabolismo , Modelos Biológicos , Procesamiento Proteico-Postraduccional/fisiología , Transportador de Casetes de Unión a ATP, Subfamilia G, Miembro 1 , Transportadoras de Casetes de Unión a ATP/genética , Transportadoras de Casetes de Unión a ATP/metabolismo , Animales , Aorta/citología , Apolipoproteína A-I/genética , Bovinos , Línea Celular , Células Endoteliales/citología , Humanos , Mutación , Estructura Terciaria de Proteína , Transporte de Proteínas/fisiología , Receptores Depuradores de Clase B/genética , Receptores Depuradores de Clase B/metabolismo , Relación Estructura-Actividad
4.
Circ Res ; 104(10): 1142-50, 2009 May 22.
Artículo en Inglés | MEDLINE | ID: mdl-19372466

RESUMEN

Cholesterol efflux from macrophage foam cells is a rate-limiting step in reverse cholesterol transport. In this process cholesterol acceptors like high-density lipoproteins (HDL) and apolipoprotein (apo)A-I must cross the endothelium to get access to the donor cells in the arterial intima. Previously, we have shown that apoA-I passes a monolayer of aortic endothelial cells (ECs) from the apical to the basolateral side by transcytosis, which is modulated by the ATP-binding cassette transporter (ABC)A1. Here, we analyzed the interaction of mature HDL with ECs. ECs bind HDL in a specific and saturable manner. Both cell surface biotinylation experiments and immunofluorescence microscopy of HDL recovered approximately 30% of the cell-associated HDL intracellularly. Cultivated on inserts ECs bind, internalize, and translocate HDL from the apical to the basolateral compartment in a specific and temperature-dependent manner. The size of the translocated particle was reduced, but its protein moiety remained intact. Using RNA interference, we investigated the impact of SR-BI, ABCA1, and ABCG1 on binding, internalization, and transcytosis of HDL by ECs. HDL binding was reduced by 50% and 30% after silencing of SR-BI and ABCG1, respectively, but not at all after diminishing ABCA1 expression. Knock down of SR-BI and, even more so, ABCG1 reduced HDL transcytosis but did not affect inulin permeability. Cosilencing of both proteins did not further reduce HDL binding, internalization, or transport. In conclusion, ECs transcytose HDL by mechanisms that involve either SR-BI or ABCG1 but not ABCA1.


Asunto(s)
Transportadoras de Casetes de Unión a ATP/metabolismo , Aorta/metabolismo , Antígenos CD36/metabolismo , Endotelio Vascular/metabolismo , Lipoproteínas HDL/metabolismo , Animales , Aorta/citología , Transporte Biológico/fisiología , Bovinos , Permeabilidad de la Membrana Celular/fisiología , Células Cultivadas , Colesterol/metabolismo , Endotelio Vascular/citología
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