Posttranscriptional Regulation of the Human LDL Receptor by the U2-Spliceosome

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Zanoni, Paolo | Panteloglou, Grigorios | Othman, Alaa | Haas, Joël T. | Meier, Roger | Rimbert, Antoine | Futema, Marta | Khalil, Yara Abou | Norrelykke, Simon Flyvbjerg | Rzepiela, Andrzej Jerzy | Stoma, Szymon | Stebler, Michael | van Dijk, Freerk | Wijers, Melinde | Wolters, Justina Clarinda | Dalila, Nawar | Huijkman, Nicolette C.A. | Smit, Marieke | Gallo, Antonio | Carreau, Valérie | Philippi, Anne | Rabès, Jean Pierre H. | Boileau, Cathérine R. | Visentin, Michele | Vonghia, Luisa | Weyler, Jonas | Francque, Sven M.A. | Verrijken, An | Verhaegen, Ann A. | van Gaal, Luc F. | van Der Graaf, Adriaan | van Rosmalen, Belle Vivica | Robert, Jérôme | Velagapudi, Srividya | Yalcinkaya, Mustafa | Keel, Michaela | Radosavljevic, Silvija | Geier, Andreas | Tybjaerg-Hansen, Anne | Varret, Mathilde | Rohrer, Lucia | Humphries, Steve E. | Staels, Bart | van de Sluis, Bart J.A. | Kuivenhoven, Jan Albert | von Eckardstein, Arnold

Edité par CCSD ; American Heart Association -

International audience. BACKGROUND: The LDLR (low-density lipoprotein receptor) in the liver is the major determinant of LDL-cholesterol levels in human plasma. The discovery of genes that regulate the activity of LDLR helps to identify pathomechanisms of hypercholesterolemia and novel therapeutic targets against atherosclerotic cardiovascular disease. METHODS: We performed a genome-wide RNA interference screen for genes limiting the uptake of fluorescent LDL into Huh-7 hepatocarcinoma cells. Top hit genes were validated by in vitro experiments as well as analyses of data sets on gene expression and variants in human populations. RESULTS: The knockdown of 54 genes significantly inhibited LDL uptake. Fifteen of them encode for components or interactors of the U2-spliceosome. Knocking down any one of 11 out of 15 genes resulted in the selective retention of intron 3 of LDLR. The translated LDLR fragment lacks 88% of the full length LDLR and is detectable neither in nontransfected cells nor in human plasma. The hepatic expression of the intron 3 retention transcript is increased in nonalcoholic fatty liver disease as well as after bariatric surgery. Its expression in blood cells correlates with LDL-cholesterol and age. Single nucleotide polymorphisms and 3 rare variants of one spliceosome gene, RBM25, are associated with LDL-cholesterol in the population and familial hypercholesterolemia, respectively. Compared with overexpression of wild-type RBM25, overexpression of the 3 rare RBM25 mutants in Huh-7 cells led to lower LDL uptake. CONCLUSIONS: We identified a novel mechanism of posttranscriptional regulation of LDLR activity in humans and associations of genetic variants of RBM25 with LDL-cholesterol levels.

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