School of Biological Sciences, University of Hong Kong, Hong Kong, China.
Am J Physiol Endocrinol Metab. 2013 Aug 1;305(3):E348-66. doi: 10.1152/ajpendo.00141.2013. Epub 2013 May 28.
Spexin (SPX) is a neuropeptide identified recently by bioinformatic approach. At present not much is known about its biological actions, and comparative studies of SPX in nonmammalian species are still lacking. To examine the structure and function of SPX in fish model, SPX was cloned in goldfish and found to be highly comparable with its mammalian counterparts. As revealed by NMR spectroscopies, goldfish SPX is composed of an α-helix from Gln(5) to Gln(14) with a flexible NH2 terminus from Asn(1) to Pro(4), and its molecular surface is largely hydrophobic except for Lys(11) as the only charged residue in the helical region. In goldfish, SPX transcripts were found to be widely expressed in various tissues, and protein expression of SPX was also detected in the brain. In vivo feeding studies revealed that SPX mRNA levels in the telencephalon, optic tectum, and hypothalamus of goldfish brain could be elevated by food intake. However, brain injection of goldfish SPX inhibited both basal and NPY- or orexin-induced feeding behavior and food consumption. Similar treatment also reduced transcript expression of NPY, AgRP, and apelin, with concurrent rises in CCK, CART, POMC, MCH, and CRH mRNA levels in different brain areas examined. The differential effects of SPX treatment on NPY, CCK, and MCH transcript expression could also be noted in vitro in goldfish brain cell culture. Our studies for the first time unveil the solution structure of SPX and its novel function as a satiety factor through differential modulation of central orexigenic and anorexigenic signals.
Spexin (SPX) 是一种最近通过生物信息学方法鉴定的神经肽。目前,人们对其生物学作用知之甚少,并且在非哺乳动物物种中对 SPX 的比较研究仍然缺乏。为了研究 SPX 在鱼类模型中的结构和功能,我们在金鱼中克隆了 SPX,并发现它与哺乳动物的 SPX 高度相似。通过 NMR 光谱学揭示,金鱼 SPX 由从 Gln(5)到 Gln(14)的α-螺旋组成,其 NH2 末端从 Asn(1)到 Pro(4)具有柔性,除了螺旋区域中的唯一带电荷残基 Lys(11)外,其分子表面主要是疏水性的。在金鱼中,发现 SPX 转录本广泛表达于各种组织中,并且在大脑中也检测到 SPX 蛋白的表达。体内喂养研究表明,金鱼脑的端脑、视顶盖和下丘脑中的 SPX mRNA 水平可以通过进食而升高。然而,脑内注射金鱼 SPX 抑制了基础和 NPY 或食欲素诱导的摄食行为和食物消耗。类似的处理还降低了 NPY、AgRP 和 apelin 的转录表达,同时在不同脑区检查时 CCK、CART、POMC、MCH 和 CRH mRNA 水平升高。SPX 处理对 NPY、CCK 和 MCH 转录表达的差异影响也可以在金鱼脑细胞培养中体外观察到。我们的研究首次揭示了 SPX 的溶液结构及其作为饱食因子的新功能,通过对中枢食欲素和厌食素信号的差异调节。