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Journal ArticleDOI

Insulin Stimulates Lipogenesis and Attenuates Beta‐Oxidation in White Adipose Tissue of Fed Rainbow Trout

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TLDR
It is found that insulin acts as an important regulator of trout WAT lipid metabolism, inducing the final stage of lipogenesis at molecular, protein and enzyme activity levels and suppressing β-oxidation at least at a molecular level.
Abstract
As lipid deposition tissue in fish, the white adipose tissue (WAT) has important functions related to reproduction and the challenges of long-term fasting. In the study reported here, we infused fish fed a high-carbohydrate diet with two doses of insulin for 5 days in order to explore the effects of this hormone on lipogenesis and beta-oxidation-related enzymes. We demonstrated the presence of some of the main lipogenic enzymes at molecular, protein and activity levels (ATP-citrate lyase and fatty acid synthase). However, while ATP-citrate lyase was unexpectedly down-regulated, fatty acid synthase was up-regulated (at protein and activity levels) in an insulin dose-dependent manner. The main enzymes acting as NADPH donors for lipogenesis were also characterized at biochemical and molecular levels, although there was no evidence of their regulation by insulin. On the other hand, lipid oxidation potential was found in this tissue through the measurement of gene expression of enzymes involved in β-oxidation, highlighting two carnitine palmitoyltransferase isoforms, both down-regulated by insulin infusion. We found that insulin acts as an important regulator of trout WAT lipid metabolism, inducing the final stage of lipogenesis at molecular, protein and enzyme activity levels and suppressing β-oxidation at least at a molecular level. These results suggest that WAT in fish may have a role that is important not only as a lipid deposition tissue but also as a lipogenic organ (with possible involvement in glucose homeostasis) that could also be able to utilize the lipids stored as a local energy source.

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Journal ArticleDOI

Glucose metabolism in fish: a review

TL;DR: The aim is to up-date carbohydrate metabolism in fish, placing it to the context of these new experimental tools and its relationship to dietary intake and it is suggested that new research directions ultimately will lead to a better understanding of these processes.
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Utilisation of dietary carbohydrates in farmed fishes: New insights on influencing factors, biological limitations and future strategies

TL;DR: This review intends to put together pieces of the puzzle of dietary carbohydrate utilisation in fish based on new insights gained with respect to the various biological, nutritional and environmental factors influencing carbohydrate use, and promising future approaches to augment carbohydrate use in fish.
Journal ArticleDOI

Regulation of metabolism by dietary carbohydrates in two lines of rainbow trout divergently selected for muscle fat content

TL;DR: The present study demonstrates the changes in hepatic intermediary metabolism resulting from genetic selection for high muscle fat content and dietary carbohydrate intake without, however, any interaction for an improved growth or glucose utilisation in the peripheral tissues.
Journal ArticleDOI

New insights into the signaling system and function of insulin in fish.

TL;DR: The diverse actions of INS in fish as well as the diverse nature of the neural, hormonal, and environmental factors known to affect the INS signaling system reflects the various life history patterns that have evolved to enable fish to occupy a wide range of aquatic habitats.
Journal ArticleDOI

Characteristics and metabolism of different adipose tissues in fish

TL;DR: This review highlights that fish adipose tissues differ in their localization and their morphological characteristics and that they show a large plasticity in their responses to variations of both extrinsic and intrinsic factors.
References
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Journal ArticleDOI

Adipose tissue as a buffer for daily lipid flux

Keith N. Frayn
- 24 Jul 2002 - 
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Journal ArticleDOI

Glucose intolerance in teleost fish: fact or fiction?

TL;DR: By altering peripheral glucose utilization fish could become more glucose tolerant, costs to the aquaculture industry may be substantially reduced, and future experimental directions are suggested.
Journal ArticleDOI

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TL;DR: Aspects of lipid metabolism, including absorption and depositional processes, appear quite different in fish as compared to homeothermic vertebrates.
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