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Journal of Lipid Research
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    • cholesteryl ester3
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    • Research Article
      Open Access

      Plasma FA composition in familial LCAT deficiency indicates SOAT2-derived cholesteryl ester formation in humans

      Journal of Lipid Research
      Vol. 63Issue 7100232Published online: May 18, 2022
      • Chiara Pavanello
      • Alice Ossoli
      • Arianna Strazzella
      • Patrizia Risè
      • Fabrizio Veglia
      • Marie Lhomme
      • and others
      Cited in Scopus: 0
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        Mutations in the LCAT gene cause familial LCAT deficiency (Online Mendelian Inheritance in Man ID: #245900), a very rare metabolic disorder. LCAT is the only enzyme able to esterify cholesterol in plasma, whereas sterol O-acyltransferases 1 and 2 are the enzymes esterifying cellular cholesterol in cells. Despite the complete lack of LCAT activity, patients with familial LCAT deficiency exhibit circulating cholesteryl esters (CEs) in apoB-containing lipoproteins. To analyze the origin of these CEs, we investigated 24 carriers of LCAT deficiency in this observational study.
        Plasma FA composition in familial LCAT deficiency indicates SOAT2-derived cholesteryl ester formation in humans
      • Research Article
        Open Access

        Vasculoprotective properties of plasma lipoproteins from brown bears (Ursus arctos)

        Journal of Lipid Research
        Vol. 62100065Published online: March 10, 2021
        • Matteo Pedrelli
        • Paolo Parini
        • Jonas Kindberg
        • Jon M. Arnemo
        • Ingemar Bjorkhem
        • Ulrika Aasa
        • and others
        Cited in Scopus: 0
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          Plasma cholesterol and triglyceride (TG) levels are twice as high in hibernating brown bears (Ursus arctos) than healthy humans. Yet, bears display no signs of early stage atherosclerosis development when adult. To explore this apparent paradox, we analyzed plasma lipoproteins from the same 10 bears in winter (hibernation) and summer using size exclusion chromatography, ultracentrifugation, and electrophoresis. LDL binding to arterial proteoglycans (PGs) and plasma cholesterol efflux capacity (CEC) were also evaluated.
          Vasculoprotective properties of plasma lipoproteins from brown bears (Ursus arctos)
        • Research Article
          Open Access

          rHDL modeling and the anchoring mechanism of LCAT activation

          Journal of Lipid Research
          Vol. 62100006Published online: December 9, 2020
          • Tommaso Laurenzi
          • Chiara Parravicini
          • Luca Palazzolo
          • Uliano Guerrini
          • Elisabetta Gianazza
          • Laura Calabresi
          • and others
          Cited in Scopus: 0
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            Lecithin:cholesterol-acyl transferase (LCAT) plays a major role in cholesterol metabolism as it is the only extracellular enzyme able to esterify cholesterol. LCAT activity is required for lipoprotein remodeling and, most specifically, for the growth and maturation of HDLs. In fact, genetic alterations affecting LCAT functionality may cause a severe reduction in plasma levels of HDL-cholesterol with important clinical consequences. Although several hypotheses were formulated, the exact molecular recognition mechanism between LCAT and HDLs is still unknown.
            rHDL modeling and the anchoring mechanism of LCAT activation
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