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首页> 外文期刊>The Journal of Experimental Biology >The long-chain fatty acid receptors FFA1 and FFA4 are involved in food intake regulation in fish brain
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The long-chain fatty acid receptors FFA1 and FFA4 are involved in food intake regulation in fish brain

机译:长链脂肪酸受体FFA1和FFA4参与鱼类的食物摄入调节

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摘要

We hypothesized that the free fatty acid receptors FFA1 and FFA4 might be involved in the anorectic response observed in fish after rising levels of long-chain fatty acids (LCFAs) such as oleate. In one experiment we demonstrated that intracerebroventricular (i.c.v.) treatment of rainbow trout with FFA1 and FFA4 agonists elicited an anorectic response 2, 6 and 24 h after treatment. In a second experiment, the same i.c.v. treatment resulted after 2 h in an enhancement in the mRNA abundance of anorexigenic neuropeptides pomca1 and cartpt and a decrease in the values of orexigenic peptides npy and agrp1. These changes occurred in parallel with those observed in the mRNA abundance and/or protein levels of the transcription factors Creb, Bsx and FoxO1, protein levels and phosphorylation status of Ampka and Akt, and mRNA abundance of plcb1 and itrp3. Finally, we assessed in a third experiment the response of all these parameters after 2 h of i.c.v. treatment with oleate (the endogenous ligand of both free fatty acid receptors) alone or in the presence of FFA1 and FFA4 antagonists. Most effects of oleate disappeared in the presence of FFA1 and FFA4 antagonists. The evidence obtained supports the involvement of FFA1 and FFA4 in fatty acid sensing in fish brain, and thus involvement in food intake regulation through mechanisms not exactly comparable (differential response of neuropeptides and cellular signalling) to those known in mammals.
机译:我们假设游离脂肪酸受体FFA1和FFA4可能参与在鱼类的长链脂肪酸(LCFA)如果糕水平上升到鱼类中观察到的肛肠反应。在一个实验中,我们证明了在治疗后的危险鳟鱼和FFA4激动剂的虹鳟鱼的处理引发了治疗后的毒性反应2,6和24小时。在第二个实验中,相同的I.C.V.治疗后2小时后,在厌氧神经肽POMCA1和CASTPT的mRNA丰富的增强中,以及丙烯肽NPY和AGRP1的值的减少。这些变化与在转录因子CREB,BSX和FOXO1,蛋白质水平和AMPKA和AKT的磷酸化状态的mRNA丰富和/或蛋白质水平观察到的变化,以及PLCB1和ITRP3的mRNA丰富。最后,我们在第三个实验中评估了所有这些参数的响应在I.C.V中的2小时后。单独或在FFA1和FFA4拮抗剂存在下用油eate(自由脂肪酸受体的内源性配体)处理。在FFA1和FFA4拮抗剂的存在下,油脂的大多数效果消失了。获得的证据支持FFA1和FFA4在鱼类中的脂肪酸感受中的参与,从而通过不完全相当的(神经肽和细胞信号传导的差异响应)与哺乳动物中已知的机制的食物摄入调节中的参与。

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  • 来源
    《The Journal of Experimental Biology 》 |2020年第17期| 共12页
  • 作者单位

    Univ Vigo Fac Biol &

    Ctr Invest Marina Dept Biol Func &

    Ciencias Saude Lab Fisioloxia Anim Vigo 36310 Spain;

    Univ Vigo Fac Biol &

    Ctr Invest Marina Dept Biol Func &

    Ciencias Saude Lab Fisioloxia Anim Vigo 36310 Spain;

    Univ Vigo Fac Biol &

    Ctr Invest Marina Dept Biol Func &

    Ciencias Saude Lab Fisioloxia Anim Vigo 36310 Spain;

    Univ Vigo Fac Biol &

    Ctr Invest Marina Dept Biol Func &

    Ciencias Saude Lab Fisioloxia Anim Vigo 36310 Spain;

    Univ Vigo Fac Biol &

    Ctr Invest Marina Dept Biol Func &

    Ciencias Saude Lab Fisioloxia Anim Vigo 36310 Spain;

    Univ Vigo Fac Biol &

    Ctr Invest Marina Dept Biol Func &

    Ciencias Saude Lab Fisioloxia Anim Vigo 36310 Spain;

    Univ Vigo Fac Biol &

    Ctr Invest Marina Dept Biol Func &

    Ciencias Saude Lab Fisioloxia Anim Vigo 36310 Spain;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物学实验与生物学技术 ;
  • 关键词

    FFA1; FFA4; Fish; Food intake; Hypothalamus; Oleate;

    机译:ffa1;ffa4;鱼;食物摄入;下丘脑;油脂;

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