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Functional Characterization and Signaling Systems of Corazonin and Red Pigment Concentrating Hormone in the Green Shore Crab Carcinus maenas

机译:绿岸蟹胭脂蟹中冠红素和红色素浓缩激素的功能表征和信号系统

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摘要

Neuropeptides play a central role as neurotransmitters, neuromodulators and hormones in orchestrating arthropod physiology. The post-genomic surge in identified neuropeptides and their putative receptors has not been matched by functional characterization of ligand-receptor pairs. Indeed, until very recently no G protein-coupled receptors (GPCRs) had been functionally defined in any crustacean. Here we explore the structurally-related, functionally-diverse gonadotropin-releasing hormone paralogs, corazonin (CRZ) and red-pigment concentrating hormone (RPCH) and their G-protein coupled receptors (GPCRs) in the crab, Carcinus maenas. Using aequorin luminescence to measure in vitro Ca2+ mobilization we demonstrated receptor-ligand pairings of CRZ and RPCH. CRZR-activated cell signaling in a dose-dependent manner (EC50 0.75 nM) and comparative studies with insect CRZ peptides suggest that the C-terminus of this peptide is important in receptor-ligand interaction. RPCH interacted with RPCHR with extremely high sensitivity (EC50 20 pM). Neither receptor bound GnRH, nor the AKH/CRZ-related peptide. Transcript distributions of both receptors indicate that CRZR expression was, unexpectedly, restricted to the Y-organs (YO). Application of CRZ peptide to YO had no effect on ecdysteroid biosynthesis, excepting a modest stimulation in early post-molt. CRZ had no effect on heart activity, blood glucose levels, lipid mobilization or pigment distribution in chromatophores, a scenario that reflected the distribution of its mRNA. Apart from the well-known activity of RPCH as a chromatophorotropin, it also indirectly elicited hyperglycemia (which was eyestalk-dependent). RPCHR mRNA was also expressed in the ovary, indicating possible roles in reproduction. The anatomy of CRZ and RPCH neurons in the nervous system is described in detail by immunohistochemistry and in situ hybridization. Each peptide has extensive but non-overlapping distribution in the CNS, and neuroanatomy suggests that both are possibly released from the post-commissural organs. This study is one of the first to deorphanize a GPCR in a crustacean and to provide evidence for hitherto unknown and diverse functions of these evolutionarily-related neuropeptides.
机译:神经肽在协调节肢动物生理中起着神经递质,神经调节剂和激素的重要作用。鉴定出的神经肽及其推定受体的基因组后激增尚未通过配体-受体对的功能表征来匹配。实际上,直到最近,在任何甲壳动物中都尚未在功能上定义G蛋白偶联受体(GPCR)。在这里,我们探讨了螃蟹Carenaus maenas中与结构相关的功能多样的促性腺激素释放激素类似物corazonin(CRZ)和红色色素浓缩激素(RPCH)及其G蛋白偶联受体(GPCR)。利用水母发光蛋白的发光来测量Ca 2+的体外动员,我们证明了CRZ和RPCH的受体-配体配对。 CRZR激活的细胞信号传导呈剂量依赖性(EC50 0.75 nM),并与昆虫CRZ肽进行比较研究表明,该肽的C末端在受体-配体相互作用中很重要。 RPCH与RPCHR相互作用具有极高的灵敏度(EC50 20 pM)。受体既不结合GnRH,也不结合AKH / CRZ相关肽。两种受体的转录物分布表明,CRZR表达出乎意料地限于Y器官(YO)。将CRZ肽应用于YO对蜕皮激素的生物合成没有影响,除了在蜕皮后早期有适度的刺激作用。 CRZ对心脏活动,血糖水平,脂质动员或色谱中的色素分布没有影响,这种情况反映了其mRNA的分布。除了众所周知的RPCH作为嗜铬细胞增生素的活性外,它还间接引起高血糖症(依赖于视线)。 RPCHR mRNA在卵巢中也有表达,表明其可能在生殖中发挥作用。通过免疫组织化学和原位杂交详细描述了神经系统中CRZ和RPCH神经元的解剖结构。每个肽在中枢神经系统中都有广泛但不重叠的分布,神经解剖学提示这两种肽都可能从合后器官释放。这项研究是第一个在甲壳动物中使GPCR脱孤的研究,并为这些进化相关的神经肽迄今未知和多样的功能提供了证据。

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