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来自热带陆蟹(Gecarcinus lateralis)的重组眼柄甲壳类高血糖激素的表达,该激素在体外抑制Y器官蜕皮甾体生成。

Expression of recombinant eyestalk crustacean hyperglycemic hormone from the tropical land crab, Gecarcinus lateralis, that inhibits Y-organ ecdysteroidogenesis in vitro.

作者信息

Zarubin Tyler P, Chang Ernest S, Mykles Donald L

机构信息

Department of Biology, Colorado State University, Fort Collins, CO 80523, USA.

出版信息

Mol Biol Rep. 2009 Jul;36(6):1231-7. doi: 10.1007/s11033-008-9302-8. Epub 2008 Jul 2.

Abstract

Crustacean hyperglycemic hormone (CHH) is a pleiotropic neuropeptide that regulates carbohydrate and lipid metabolism, molting, reproduction, and osmoregulation in decapod crustaceans. CHH elevates glucose levels in the hemolymph by stimulating glycogenolysis in target tissues. It also inhibits ecdysteroidogenesis in the molting gland, or Y-organ (YO), possibly as a response to environmental stress. CHH acts via binding to a membrane receptor guanylyl cyclase, which is expressed in most tissues, including the YO. Large amounts of biologically active neuropeptide are required to investigate the mechanism of CHH signaling in the YO. Consequently, the eyestalk ganglia CHH (EG-CHH) isoform was cloned into a yeast (Pichia pastoris) expression vector to express recombinant mature peptide (rEG-CHH) with or without a C-terminal c-Myc/polyhistidine tag. Yeast cultures with untagged or tagged rEG-CHH inhibited ecdysteroidogenesis in YOs from European green crab (Carcinus maenas) 36% (P < 0.002) and 51% (P < 0.006), respectively. Purified tagged EG-CHH inhibited YO ecdysteroidogenesis 32% (P < 0.002), but lacked hyperglycemic activity in vivo. This is the first report of recombinant EG-CHH inhibiting YO ecdysteroidogenesis. The data suggest that the tagged recombinant peptide can be used to elucidate the CHH signaling pathway in the crustacean molting gland.

摘要

甲壳动物高血糖激素(CHH)是一种多效性神经肽,可调节十足目甲壳动物的碳水化合物和脂质代谢、蜕皮、繁殖及渗透压调节。CHH通过刺激靶组织中的糖原分解来提高血淋巴中的葡萄糖水平。它还可能作为对环境压力的一种反应,抑制蜕皮腺或Y器官(YO)中的蜕皮类固醇生成。CHH通过与膜受体鸟苷酸环化酶结合发挥作用,该酶在包括YO在内的大多数组织中均有表达。研究YO中CHH信号传导机制需要大量具有生物活性的神经肽。因此,将眼柄神经节CHH(EG-CHH)同工型克隆到酵母(毕赤酵母)表达载体中,以表达带有或不带有C端c-Myc/多聚组氨酸标签的重组成熟肽(rEG-CHH)。未标记或标记rEG-CHH的酵母培养物分别抑制欧洲绿蟹(Carcinus maenas)YO中的蜕皮类固醇生成36%(P < 0.002)和51%(P < 0.006)。纯化的标记EG-CHH抑制YO蜕皮类固醇生成32%(P < 0.002),但在体内缺乏高血糖活性。这是关于重组EG-CHH抑制YO蜕皮类固醇生成的首次报道。数据表明,标记的重组肽可用于阐明甲壳动物蜕皮腺中的CHH信号通路。

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