首页> 美国卫生研究院文献>Frontiers in Endocrinology >TAC3 Gene Products Regulate Brain and Digestive System Gene Expression in the Spotted Sea Bass (Lateolabrax maculatus)
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TAC3 Gene Products Regulate Brain and Digestive System Gene Expression in the Spotted Sea Bass (Lateolabrax maculatus)

机译:TAC3基因产物调节斑点鲈鱼(Lateolabrax maculatus)中的大脑和消化系统基因表达

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摘要

Neurokinin B (NKB) is a member of the tachykinin (tac) family that plays important roles in mammalian growth by modulating prolactin (PRL) synthesis and secretion and causing contraction of the stomach and intestine. However, its potential role in regulating growth of teleosts is less clear. We aimed to explore the role that NKB plays in regulating fish growth using the spotted sea bass (Lateolabrax maculatus) as a model. In the present study, two tac3 and two tacr3 genes were identified in the spotted sea bass. Sequence analysis showed that two tac3 transcripts, tac3a and tac3b, encode four NKBs: NKBa-13, NKBa-10, NKBb-13, and NKBb-10. Expression analysis in different tissues showed that both genes are highly expressed in the brain, stomach and intestine of the spotted sea bass. In situ hybridization indicated that the tac3a and tac3b mRNAs are both localized in several brain regions, such as the telencephalon and hypothalamus, and that tacr3a and tacr3b are localized in the intestinal villus and gastric gland. To investigate the potential role of NKBs in regulating growth, in vitro experiments were performed to detect the effect of NKBs on growth-related gene expression in the brain and brain-gut peptide (BGP)-related genes in the stomach and intestine. NKBb-13 was the most critical ligand in regulating the expression of growth-related genes in the brain and brain-gut peptide (BGP)-related genes in the stomach. The expression of cholecystokinin (cck) was enhanced by NKBa-13, NKBa-10, and NKBb-10 but not NKBb-13 in the intestine. In general, our results showed that NKBs participate in regulating the growth of spotted sea bass.
机译:Neurokinin B(NKB)是速激肽(tac)家族的成员,通过调节催乳素(PRL)的合成和分泌并引起胃和肠收缩,在哺乳动物的生长中发挥重要作用。但是,其在调节硬骨鱼生长中的潜在作用尚不清楚。我们旨在使用斑点鲈鱼(Lateolabrax maculatus)作为模型,探索NKB在调节鱼类生长中的作用。在本研究中,在斑点鲈鱼中鉴定出两个tac3和两个tacr3基因。序列分析表明,两个tac3转录本tac3a和tac3b编码四个NKB:NKBa-13,NKBa-10,NKBb-13和NKBb-10。在不同组织中的表达分析表明,这两种基因在斑点鲈鱼的脑,胃和肠中均高表达。原位杂交表明,tac3a和tac3b mRNAs均位于几个脑区域,例如端脑和下丘脑,而tacr3a和tacr3b则位于肠绒毛和胃腺中。为了研究NKB在调节生长中的潜在作用,进行了体外实验以检测NKB对大脑中与生长相关的基因表达以及在胃和肠中与脑肠肽(BGP)相关的基因的影响。 NKBb-13是调节大脑中与生长相关的基因和胃中与肠-肠肽(BGP)相关的基因表达的最关键配体。肠道中的NKBa-13,NKBa-10和NKBb-10增强胆囊收缩素(cck)的表达。通常,我们的结果表明NKB参与调节斑点鲈鱼的生长。

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