Probiotic (Enterococcus faecium) induced responses of the hepatic proteome improves metabolic efficiency of broiler chickens (Gallus gallus)
Реакции печеночного протеома, индуцированные пробиотиком (Enterococcus faecium), повышают метаболическую эффективность бройлеров (Gallus gallus)
2016-02-01
SCID: 54.1/5rmxkwvr
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2-D DIGEEnterococcus faeciumantioxidant systembroiler chickens (Gallus gallus)calcium ion fluxcell redox homeostasiscellular hormone metabolismhepatic proteomeinflammatory responsesmass spectrometrynutrient metabolismplatelet activationprotein tetramerizationsulphur amino acid metabolismvitamin metabolism
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Abstract (AI)
BACKGROUND: The liver plays important roles in nutrient metabolism, detoxification and immunity. Enterococcus faecium (E. faecium) is a probiotic that has been shown to have positive effects on broiler production. However, its molecular effects on liver metabolism have not been characterized. This study aims to further identify the biological roles of E. faecium by characterizing the hepatic proteomic changes of broilers (Gallus gallus) fed E. faecium using two-dimensional fluorescence difference gel electrophoresis (2-D DIGE) and mass spectrometry (MS). RESULTS: Thirty-three proteins (50 protein spots) involved in nutrient metabolism, immunity and the antioxidant system were shown to be differentially expressed in the liver of broilers fed E. faecium than from birds not fed the probiotic. The biological processes of sulphur amino acids, vitamin and cellular hormone metabolism, sulphur compound biosynthesis and protein tetramerization were enhanced in the liver of broilers fed E. faecium. However, proteins involved in calcium ion flux, cell redox homeostasis and platelet activation related to hepatic immune responses were down-regulated in broilers fed E. faecium. These results indicate that the supplementation of poultry feed with E. faecium may alter the partitioning of nutrients and promote optimal nutrient utilization. CONCLUSIONS: This study assists in unraveling the molecular effects of the dietary probiotic, E. faecium, in the liver of broiler chickens. It shows that the probiotic improves the metabolism of nutrients and decreases inflammatory responses. Our findings extend previous knowledge of the mechanism of dietary probiotic action and provide new findings for research and future probiotic development.
Key Findings
1
Biological processes enhanced in livers of E. faecium-fed broilers included sulphur amino acid metabolism, vitamin metabolism, cellular hormone metabolism, sulphur compound biosynthesis, and protein tetramerization.
2
E. faecium supplementation decreased inflammatory-related hepatic responses, supporting its role in improving nutrient metabolism and reducing liver inflammation.
3
Feeding broiler chickens Enterococcus faecium altered hepatic expression of 33 proteins (50 spots) involved in nutrient metabolism, immunity, and antioxidant systems.
4
Proteins related to calcium ion flux, cell redox homeostasis, and platelet activation (hepatic immune responses) were down-regulated in E. faecium-fed broilers.
5
Supplementation with E. faecium may shift nutrient partitioning and promote improved nutrient utilization and metabolic efficiency in broiler chickens.
Research Object
Liver (hepatic) proteome of broiler chickens (Gallus gallus) fed the probiotic Enterococcus faecium
Research Subject
Proteomic changes in liver associated with nutrient metabolism, antioxidant and immune-related pathways (e.g., sulfur amino acid, vitamin and hormone metabolism, sulfur compound biosynthesis, protein tetramerization; calcium ion flux, redox homeostasis, platelet activation) and their effect on metabolic efficiency and inflammatory responses
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2016-02-01
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