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Journal of Lipid Research
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    • Research Article
      Open Access

      Gut microbiome-derived glycine lipids are diet-dependent modulators of hepatic injury and atherosclerosis

      Journal of Lipid Research
      Vol. 63Issue 4100192Published online: March 9, 2022
      • Courtney L. Millar
      • Liya Anto
      • Chelsea Garcia
      • Mi-Bo Kim
      • Anisha Jain
      • Anthony A. Provatas
      • and others
      Cited in Scopus: 1
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        Oral and gut Bacteroidetes produce unique classes of serine-glycine lipodipeptides and glycine aminolipids that signal through host Toll-like receptor 2. These glycine lipids have also been detected in human arteries, but their effects on atherosclerosis are unknown. Here, we sought to investigate the bioactivity of bacterial glycine lipids in mouse models of atherosclerosis. Lipid 654 (L654), a serine-glycine lipodipeptide species, was first tested in a high-fat diet (HFD)-fed Ldlr−/− model of atherosclerosis.
        Gut microbiome-derived glycine lipids are diet-dependent modulators of hepatic injury and atherosclerosis
      • Research Article
        Open Access

        Atherosclerosis-associated hepatic secretion of VLDL but not PCSK9 is dependent on cargo receptor protein Surf4

        Journal of Lipid Research
        Vol. 62100091Published online: June 9, 2021
        • Bingxiang Wang
        • Yishi Shen
        • Lei Zhai
        • Xiaodan Xia
        • Hong-mei Gu
        • Maggie Wang
        • and others
        Cited in Scopus: 0
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          Plasma LDL is produced from catabolism of VLDL and cleared from circulation mainly via the hepatic LDL receptor (LDLR). Proprotein convertase subtilisin/kexin type 9 (PCSK9) promotes LDLR degradation, increasing plasma LDL-C levels. Circulating PCSK9 is mainly secreted by the liver, whereas VLDL is exclusively secreted by hepatocytes. However, the mechanism regulating their secretion is not completely understood. Surfeit 4 (Surf4) is a cargo receptor localized in the ER membrane. It recruits cargos into coat protein complex II vesicles to facilitate their secretion.
          Atherosclerosis-associated hepatic secretion of VLDL but not PCSK9 is dependent on cargo receptor protein Surf4
        • Research Article
          Open Access

          Nonalcoholic fatty liver disease stratification by liver lipidomics

          Journal of Lipid Research
          Vol. 62100104Published online: August 9, 2021
          • Olga Vvedenskaya
          • Tim Daniel Rose
          • Oskar Knittelfelder
          • Alessandra Palladini
          • Judith Andrea Heidrun Wodke
          • Kai Schuhmann
          • and others
          Cited in Scopus: 18
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            Nonalcoholic fatty liver disease (NAFLD) is a common metabolic dysfunction leading to hepatic steatosis. However, NAFLD's global impact on the liver lipidome is poorly understood. Using high-resolution shotgun mass spectrometry, we quantified the molar abundance of 316 species from 22 major lipid classes in liver biopsies of 365 patients, including nonsteatotic patients with normal or excessive weight, patients diagnosed with NAFL (nonalcoholic fatty liver) or NASH (nonalcoholic steatohepatitis), and patients bearing common mutations of NAFLD-related protein factors.
            Nonalcoholic fatty liver disease stratification by liver lipidomics
          • Research Article
            Open Access

            Inhibition of chylomicron assembly leads to dissociation of hepatic steatosis from inflammation and fibrosis

            Journal of Lipid Research
            Vol. 62100123Published online: September 23, 2021
            • Yan Xie
            • Elizabeth P. Newberry
            • Elizabeth M. Brunt
            • Samuel J. Ballentine
            • Saeed Soleymanjahi
            • Elizabeth A. Molitor
            • and others
            Cited in Scopus: 0
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              Regulating dietary fat absorption may impact progression of nonalcoholic fatty liver disease (NAFLD). Here, we asked if inducible inhibition of chylomicron assembly, as observed in intestine-specific microsomal triglyceride (TG) transfer protein knockout mice (Mttp-IKO), could retard NAFLD progression and/or reverse established fibrosis in two dietary models. Mttp-IKO mice fed a methionine/choline-deficient (MCD) diet exhibited reduced hepatic TGs, inflammation, and fibrosis, associated with reduced oxidative stress and downstream activation of c-Jun N-terminal kinase and nuclear factor kappa B signaling pathways.
              Inhibition of chylomicron assembly leads to dissociation of hepatic steatosis from inflammation and fibrosis
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