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硬骨鱼斑马鱼(Danio rerio)中神经介素S的结构与功能特征

Structural and functional characterization of neuromedin S in the teleost fish, zebrafish (Danio rerio).

作者信息

Chen Huapu, Huang Hongxin, Chen Xinggui, Deng Siping, Zhu Chunhua, Huang Hai, Li Guangli

机构信息

Fisheries College, Guangdong Ocean University, Zhanjiang 524088, China; Affiliated Hospital of Guangdong Medical College, Guangdong Medical College, Zhanjiang 524001, Guangdong, China.

Affiliated Hospital of Guangdong Medical College, Guangdong Medical College, Zhanjiang 524001, Guangdong, China.

出版信息

Comp Biochem Physiol B Biochem Mol Biol. 2016 Jan;191:76-83. doi: 10.1016/j.cbpb.2015.09.007. Epub 2015 Sep 26.

Abstract

Neuromedin S (NMS) has been demonstrated to have important roles in many vertebrate physiological processes. However, the function of NMS in teleost fishes remains unclear. We explored the physiological roles of the NMS gene in the zebrafish model. An NMS cDNA was cloned from zebrafish brain tissue, and the full-length cDNA sequence was 521 bp in length and encoded a precursor of 110 amino acid residues. Interestingly, fish prepro-NMS is predicted to generate a short 34-residue peptide, designated as NMS-related peptide (NMSRP). Zebrafish prepro-NMS does not contain the NMS peptide which is found in the NMS precursors of mammals, and just retains the MNSRP peptide. A multiple-species sequence alignment showed that NMSRPs are conserved among the other sampled vertebrates. Zebrafish NMS mRNA was detected by RT-PCR revealing a tissue-specific distribution with high levels of expression in the brain, spleen, ovary, pituitary, and muscle. Furthermore, the locations of NMS-expressing cells in the zebrafish brain were detected by in situ hybridization in the parvocellular preoptic nucleus (PPa), the ventral zone of the periventricular hypothalamus (Hv), and lateral hypothalamic nucleus (LH). The levels of NMS mRNA in the hypothalamus were significantly increased after three days of food deprivation. Administration of zebrafish NMSRP by intraperitoneal injection significantly promoted the expression of neuropeptide Y (NPY) and orexin, suggesting an orexigenic role for NMSRP in zebrafish. The present study offers a new understanding of the NMS gene in vertebrates and increases our knowledge of the neuroendocrine regulation of feeding.

摘要

神经介素S(NMS)已被证明在许多脊椎动物的生理过程中发挥重要作用。然而,NMS在硬骨鱼类中的功能仍不清楚。我们在斑马鱼模型中探究了NMS基因的生理作用。从斑马鱼脑组织中克隆出一个NMS cDNA,其全长cDNA序列为521 bp,编码一个由110个氨基酸残基组成的前体。有趣的是,鱼类前神经介素S被预测可产生一种由34个残基组成的短肽,命名为NMS相关肽(NMSRP)。斑马鱼前神经介素S不包含在哺乳动物NMS前体中发现的NMS肽,仅保留了MNSRP肽。多物种序列比对显示,NMSRP在其他采样的脊椎动物中是保守的。通过RT-PCR检测到斑马鱼NMS mRNA,揭示了其组织特异性分布,在脑、脾、卵巢、垂体和肌肉中表达水平较高。此外,通过原位杂交在小细胞视前核(PPa)、室周下丘脑腹侧区(Hv)和下丘脑外侧核(LH)中检测到斑马鱼脑中NMS表达细胞的位置。饥饿三天后,下丘脑中NMS mRNA的水平显著增加。腹腔注射斑马鱼NMSRP显著促进了神经肽Y(NPY)和食欲素的表达,表明NMSRP在斑马鱼中具有促食欲作用。本研究为脊椎动物中的NMS基因提供了新的认识,并增加了我们对摄食神经内分泌调节的了解。

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