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从阿拉斯加坦纳蟹(奇诺蟹)的X器官中克隆甲壳类高血糖激素(CHH)前体,并鉴定来自其窦腺的神经肽。

Molecular cloning of the crustacean hyperglycemic hormone (CHH) precursor from the X-organ and the identification of the neuropeptide from sinus gland of the Alaskan Tanner crab, Chionoecetes bairdi.

作者信息

Chung J Sook, Bembe Sarah, Tamone Sherry, Andrews Ebony, Thomas Heidy

机构信息

Center of Marine Biotechnology, University of Maryland Biotechnology Institute, Columbus Center, Baltimore, MD, USA.

出版信息

Gen Comp Endocrinol. 2009 Jun;162(2):129-33. doi: 10.1016/j.ygcen.2009.03.012. Epub 2009 Mar 28.

Abstract

Crustacean hyperglycemic hormone (CHH) secreted from sinus glands primarily elicits hyperglycaemia in crustaceans. CHH is particularly important for energy metabolism during environmental and physiological stress as animals switch to anaerobiosis. CHH has been purified from multiple brachyuran crab species to date, but not from the cold water Tanner crab, Chionoecetes bairdi, a species found in Alaskan coastal waters. The purpose of molecular cloning the C. bairdi CHH precursor and identification of its neuropeptide form in sinus glands is to establish tools to further study cold water crab metabolic physiology. Cold water crabs such as those in the genus Chionoecetes are a good model for understanding the role that climate change and associated water temperature changes might have on metabolic physiology. CHHs in sinus glands of C. bairdi were purified using reverse-phase HPLC and were identified as CHH with an enzyme-linked immunosorbent assay (ELISA) using cross-reacting Callinectes sapidus and Carcinus maenas CHH antisera. The bioactivity of CHH was further assessed using a homologous assay by injecting CHH into eyestalk ablated C. bairdi and measuring subsequent rise in circulating glucose. The full length cDNA (1944bp) of C. bairdi CHH was determined by PCR using degenerate primers cloning and 5', 3' rapid amplification of cDNA ends (RACE). A phylogenetic analysis of deduced amino acid sequences from six brachyuran crab species showed C. bairdi CHH most closely related to the majid crab, Libinia emarginata (P55688). Future studies will enable us to compare metabolic physiology and requirements of cold water C. bairdi with the warm water crab C. sapidus.

摘要

窦腺分泌的甲壳动物高血糖激素(CHH)主要引起甲壳动物的高血糖。在动物转向无氧呼吸的环境和生理应激期间,CHH对能量代谢尤为重要。迄今为止,已从多种短尾蟹物种中纯化出CHH,但尚未从冷水 Tanner 蟹(Chionoecetes bairdi)中纯化出,该物种发现于阿拉斯加沿海水域。对巴氏雪蟹CHH前体进行分子克隆并鉴定其在窦腺中的神经肽形式的目的是建立工具,以进一步研究冷水蟹的代谢生理学。像雪蟹属中的那些冷水蟹是理解气候变化及相关水温变化可能对代谢生理学产生何种作用的良好模型。使用反相高效液相色谱法纯化巴氏雪蟹窦腺中的CHH,并使用交叉反应的美味优游蟹(Callinectes sapidus)和绿青蟹(Carcinus maenas)CHH抗血清通过酶联免疫吸附测定(ELISA)对其进行鉴定。通过将CHH注射到切除眼柄的巴氏雪蟹中并测量随后循环葡萄糖的升高,使用同源测定法进一步评估CHH的生物活性。通过使用简并引物克隆和5'、3' cDNA末端快速扩增(RACE)的PCR方法确定了巴氏雪蟹CHH的全长cDNA(1944bp)。对六种短尾蟹物种推导的氨基酸序列进行的系统发育分析表明,巴氏雪蟹CHH与馒头蟹(Libinia emarginata,P55688)关系最为密切。未来的研究将使我们能够比较冷水巴氏雪蟹与温水蟹美味优游蟹的代谢生理学和需求。

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