HDL activates expression of genes stimulating cholesterol efflux in human monocyte-derived macrophages

High density lipoproteins (HDL) are key components of reverse cholesterol transport pathway. HDL removes excessive cholesterol from peripheral cells, including macrophages, providing protection from cholesterol accumulation and conversion into foam cells, which is a key event in pathogenesis of athe...

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Veröffentlicht in:Experimental and molecular pathology 2018-10, Vol.105 (2), p.202-207
Hauptverfasser: Orekhov, Alexander N., Pushkarsky, Tatiana, Oishi, Yumiko, Nikiforov, Nikita G., Zhelankin, Andrey V., Dubrovsky, Larisa, Makeev, Vsevolod J., Foxx, Kathy, Jin, Xueting, Kruth, Howard S., Sobenin, Igor A., Sukhorukov, Vasily N., Zakiev, Emile R., Kontush, Anatol, Le Goff, Wilfried, Bukrinsky, Michael
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Sprache:eng
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Zusammenfassung:High density lipoproteins (HDL) are key components of reverse cholesterol transport pathway. HDL removes excessive cholesterol from peripheral cells, including macrophages, providing protection from cholesterol accumulation and conversion into foam cells, which is a key event in pathogenesis of atherosclerosis. The mechanism of cellular cholesterol efflux stimulation by HDL involves interaction with the ABCA1 lipid transporter and ensuing transfer of cholesterol to HDL particles. In this study, we looked for additional proteins contributing to HDL-dependent cholesterol efflux. Using RNAseq, we analyzed mRNAs induced by HDL in human monocyte-derived macrophages and identified three genes, fatty acid desaturase 1 (FADS1), insulin induced gene 1 (INSIG1), and the low-density lipoprotein receptor (LDLR), expression of which was significantly upregulated by HDL. We individually knocked down these genes in THP-1 cells using gene silencing by siRNA, and measured cellular cholesterol efflux to HDL. Knock down of FADS1 did not significantly change cholesterol efflux (p = 0.70), but knockdown of INSIG1 and LDLR resulted in highly significant reduction of the efflux to HDL (67% and 75% of control, respectively, p 
ISSN:0014-4800
1096-0945
DOI:10.1016/j.yexmp.2018.08.003