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Hepatic lipid droplet-associated proteome changes distinguish dietary-induced fatty liver from glucose tolerance in male mice. | LitMetric

AI Article Synopsis

  • - Fatty liver disease is marked by an increase in lipid droplets in the liver, which is linked to various metabolic disorders; this study explored liver lipid droplet characteristics in different dietary conditions of mice.
  • - Mice on a high-fat diet (HFD) and a high-starch diet (HStD) showed larger and more lipid droplets compared to those on a normal diet (Chow), with notable differences in liver protein composition between the diet groups.
  • - The research identified specific protein changes associated with glucose intolerance and fatty liver, particularly highlighting a key ratio of proteins that indicates disrupted lipid balance, showing how diet impacts liver health beyond just fat accumulation.

Article Abstract

Fatty liver is characterized by the expansion of lipid droplets (LDs) and is associated with the development of many metabolic diseases. We assessed the morphology of hepatic LDs and performed quantitative proteomics in lean, glucose-tolerant mice compared with high-fat diet (HFD) fed mice that displayed hepatic steatosis and glucose intolerance as well as high-starch diet (HStD) fed mice who exhibited similar levels of hepatic steatosis but remained glucose tolerant. Both HFD- and HStD-fed mice had more and larger LDs than Chow-fed animals. We observed striking differences in liver LD proteomes of HFD- and HStD-fed mice compared with Chow-fed mice, with fewer differences between HFD and HStD. Taking advantage of our diet strategy, we identified a fatty liver LD proteome consisting of proteins common in HFD- and HStD-fed mice, as well as a proteome associated with glucose tolerance that included proteins shared in Chow and HStD but not HFD-fed mice. Notably, glucose intolerance was associated with changes in the ratio of adipose triglyceride lipase to perilipin 5 in the LD proteome, suggesting dysregulation of neutral lipid homeostasis in glucose-intolerant fatty liver. We conclude that our novel dietary approach uncouples ectopic lipid burden from insulin resistance-associated changes in the hepatic lipid droplet proteome. This study identified a fatty liver lipid droplet proteome and one associated with glucose tolerance. Notably, glucose intolerance was linked with changes in the ratio of adipose triglyceride lipase to perilipin 5 that is indicative of dysregulation of neutral lipid homeostasis.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11376491PMC
http://dx.doi.org/10.1152/ajpendo.00013.2024DOI Listing

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