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Proctolin in identified serotonergic dopaminergic and cholinergic neurons in the lobster Homarus americanus

机译:美国龙虾中确定的血清素能多巴胺能和胆碱能神经元中的柏陈蛋白

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摘要

In order to explore the functions of the peptide proctolin in the lobster nervous system, 3 classes of neurons showing proctolin-like immunocytochemical staining were selected for study. These neurons were identified on the basis of physiological and/or morphological criteria, isolated by dissections, and analyzed with biochemical methods to determine whether they contained authentic proctolin and which classical neurotransmitters coexisted with the peptide. Pairs of large proctolin-immunoreactive neurons in fifth thoracic and first abdominal ganglia were identified as serotonin-immunoreactive neurons (Beltz and Kravitz, 1983, 1987) by staining serial sections of the ganglia alternately with the 2 antisera. Physiologically identified cells, dissected from the ganglia and analyzed with high-performance liquid chromatography (HPLC), contained approximately 20 microM proctolin and 0.5 mM serotonin. A large proctolin-immunoreactive neuron in the circumesophageal ganglion was identified as the lobster homolog of a dopaminergic neurosecretory cell found in other crustaceans (Cooke and Goldstone, 1970). The large lobster cell stained with antityrosine hydroxylase antiserum, and synthesized 3H-dopamine from 3H-tyrosine. Dissected cell bodies, analyzed by HPLC, contained approximately 25 microM proctolin. Proctolin-immunoreactive sensory neurons were identified as large stained fibers that terminated in sensory dendrites of the oval organ mechanoreceptor in the scaphognathite (Pasztor, 1979; Pasztor and Bush, 1982). The largest sensory fiber was isolated for biochemical studies. It synthesized 3H-acetylcholine from 3H-choline and, by HPLC analysis, was found to contain approximately 3 microM proctolin. Thus, proctolin coexists with different conventional transmitters in several classes of identified lobster neurons. Investigations of the actions of proctolin in these different contexts should contribute to a more complete understanding of the diverse functions of neuropeptides and their roles as cotransmitters.
机译:为了探索肽proctolin在龙虾神经系统中的功能,选择了三类显示proctolin样免疫细胞化学染色的神经元进行研究。这些神经元是根据生理和/或形态学标准进行鉴定的,通过解剖进行分离,并用生化方法进行分析,以确定它们是否含有真正的蛋白酪蛋白,以及哪些经典的神经递质与该肽共存。通过将神经节的连续切片与2种抗血清交替染色,可以将第五个胸神经节和第一个腹部神经节中的大的对proctolin免疫反应的神经元识别为5-羟色胺免疫反应性神经元(Beltz和Kravitz,1983,1987)。从神经节切开并经高效液相色谱(HPLC)分析的生理学鉴定细胞,包含约20 microM的睾酮和0.5 mM的血清素。周围食管神经节中的大的proctolin免疫反应性神经元被确定为在其他甲壳类动物中发现的多巴胺能神经分泌细胞的龙虾同源物(Cooke和Goldstone,1970)。用抗酪氨酸羟化酶抗血清染色大龙虾细胞,并从3H-酪氨酸合成3H-多巴胺。通过HPLC分析的解剖的细胞体含有约25μM的水ct素。脯氨酸蛋白免疫反应阳性的感觉神经元被鉴定为较大的染色纤维,其终止于scaphognathite的椭圆形器官机械感受器的感觉树突中(Pasztor,1979; Pasztor and Bush,1982)。分离出最大的感觉纤维用于生化研究。它是由3H-胆碱合成的3H-乙酰胆碱,通过HPLC分析,发现其中含有约3 microM脯氨酸。因此,在几种类型的已识别龙虾神经元中,柏考特林与不同的常规递质共存。在这些不同情况下对柏考特林的作用的研究应有助于对神经肽的各种功能及其作为共递质的作用的更全面的了解。

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