首页> 外文期刊>Journal of proteome research >Discovery and characterization of the crustacean hyperglycemic hormone precursor related peptides (CPRP) and orcokinin neuropeptides in the sinus glands of the blue crab Callinectes sapidus using multiple tandem mass spectrometry techniques
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Discovery and characterization of the crustacean hyperglycemic hormone precursor related peptides (CPRP) and orcokinin neuropeptides in the sinus glands of the blue crab Callinectes sapidus using multiple tandem mass spectrometry techniques

机译:利用多重串联质谱技术在蓝蟹Call体窦窦中发现甲壳类高血糖激素前体相关肽(CPRP)和促激肽神经肽

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摘要

The crustacean sinus gland (SG) is a well-defined neuroendocrine site that produces numerous hemolymph-borne agents including the most complex class of endocrine signaling molecules-neuropeptides. Via a multifaceted mass spectrometry (MS) approach, 70 neuropeptides were identified including orcokinins, orcomyotropin, crustacean hyperglycemic hormone (CHH) precursor-related peptides (CPRPs), red pigment concentrating hormone (RPCH), pigment dispersing hormone (PDH), proctolin, RFamides, RYamides, and HL/IGSL/IYRamide. Among them, 15 novel orcokinins, 9 novel CPRPs, 1 novel orcomyotropin, 1 novel Ork/Orcomyotropin-related peptide, and 1 novel PDH were de novo sequenced via collision induced dissociation (CID) from the SG of a model organism Callinectes sapidus. Electron transfer dissociation (ETD) was used for sequencing of intact CPRPs due to their large size and higher charge state. Capillary isoelectric focusing (CIEF) was employed for separation of members of the orcokinin family, which is one of the most abundant neuropeptide families observed in the SG. Collectively, our study represents the most complete characterization of neuropeptides in the SG and provides a foundation for future investigation of the physiological function of neuropeptides in the SG of C. sapidus.
机译:甲壳窦(SG)是一个明确定义的神经内分泌位点,可产生许多由血淋巴传播的物质,包括最复杂的一类内分泌信号分子-神经肽。通过多方面质谱(MS)方法,鉴定出了70种神经肽,包括促激肽,促肌钙蛋白,甲壳类高血糖激素(CHH)前体相关肽(CPRP),红色素浓缩激素(RPCH),色素分散激素(PDH),Proctolin, RFamides,RYamides和HL / IGSL / IYRamide。其中有15种新颖的促激肽,9种新颖的CPRP,1种新颖的促红细胞生成素,1种新颖的Ork /促红细胞生成素相关肽和1种新颖的PDH从模型生物dis体的SG通过碰撞诱导解离(CID)从头测序。电子转移解离(ETD)由于完整的CPRP尺寸大且电荷状态较高而被用于测序。毛细管等电聚焦(CIEF)用于分离orcokinin家族的成员,这是SG中观察到的最丰富的神经肽家族之一。总的来说,我们的研究代表了SG中神经肽的最完整表征,并为今后研究C. sapidus SG中神经肽的生理功能提供了基础。

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