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Mass spectrometric characterization and physiological actions of novel crustacean C-type allatostatins.

机译:新型甲壳类C型阿托伐他汀的质谱表征和生理作用。

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The crustacean stomatogastric ganglion (STG) is modulated by numerous neuropeptides that are released locally in the neuropil or that reach the STG as neurohormones. Using 1,5-diaminonaphthalene (DAN) as a reductive screening matrix for matrix-assisted laser desorption/ionization (MALDI) mass spectrometric profiling of disulfide bond-containing C-type allatostatin peptides followed by electrospray ionization quadrupole time-of-flight (ESI-Q-TOF) tandem mass spectrometric (MS/MS) analysis, we identified and sequenced a novel C-type allatostatin peptide (CbAST-C1), pQIRYHQCYFNPISCF-COOH, present in the pericardial organs of the crab, Cancer borealis. Another C-type allatostatin (CbAST-C2), SYWKQCAFNAVSCFamide, was discovered using the expressed sequence tag (EST) database search strategy in both C. borealis and the lobster, Homarus americanus, and further confirmed with de novo sequencing using ESI-Q-TOF tandem MS. Electrophysiological experiments demonstrated that both CbAST-C1 and CbAST-C2 inhibited the frequency of the pyloric rhythm of the STG, in a state-dependent manner. At 10(-6)M, both peptides were only modestly effective when initial frequencies of the pyloric rhythm were >0.8Hz, but almost completely suppressed the pyloric rhythm when applied to preparations with starting frequencies <0.7Hz. Surprisingly, these state-dependent actions are similar to those of the structurally unrelated allatostatin A and allatostatin B families of peptides.
机译:甲壳动物的胃胃神经节(STG)受到许多神经肽的调节,这些神经肽在神经纤维中局部释放或作为神经激素到达STG。使用1,5-二氨基萘(DAN)作为还原筛选基质,对含二硫键的C型阿托伐他汀肽进行基质辅助激光解吸/电离(MALDI)质谱分析,然后进行电喷雾电离四极杆飞行时间(ESI) -Q-TOF)串联质谱(MS / MS)分析,我们鉴定并测序了螃蟹心北区心包器官中存在的新型C型allatostatin肽(CbAST-C1)pQIRYHQCYFNPISCF-COOH。使用表达序列标签(EST)数据库搜索策略在北极衣原体和龙虾美洲大螯虾中发现了另一种C型脲醛抑素(CbAST-C2)SYWKQCAFNAVSCFamide,并通过ESI-Q- TOF串联MS。电生理实验表明,CbAST-C1和CbAST-C2都以状态依赖的方式抑制STG幽门节律的频率。在10(-6)M时,两种肽仅在幽门节律的初始频率> 0.8Hz时才适度有效,但是当应用于起始频率<0.7Hz的制剂时,几乎完全抑制了幽门节律。出乎意料的是,这些状态依赖性作用类似于结构上无关的肽类他汀抑素A和类肽他汀。

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