首页> 外文期刊>The Journal of Comparative Neurology >Hormone complement of the Cancer productus sinus gland and pericardial organ: an anatomical and mass spectrometric investigation.
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Hormone complement of the Cancer productus sinus gland and pericardial organ: an anatomical and mass spectrometric investigation.

机译:癌窦窦和心包器官的激素补体:解剖学和质谱研究。

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摘要

In crustaceans, circulating hormones influence many physiological processes. Two neuroendocrine organs, the sinus gland (SG) and the pericardial organ (PO), are the sources of many of these compounds. As a first step in determining the roles played by hemolymph-borne agents in the crab Cancer productus, we characterized the hormone complement of its SG and PO. We show via transmission electron microscopy that the nerve terminals making up each site possess dense-core and/or electron-lucent vesicles, suggesting diverse complements of bioactive molecules for both structures. By using immunohistochemistry, we show that small molecule transmitters, amines and peptides, are among the hormones present in these tissues, with many differentially distributed between the two sites (e.g., serotonin in the PO but not the SG). With several mass spectrometric (MS) methods, we identified many of the peptides responsible for the immunolabeling and surveyed the SG and PO for peptides for which no antibodies exist. By using MS, we characterized 39 known peptides [e.g., beta-pigment-dispersing hormone (beta-PDH), crustacean cardioactive peptide, and red pigment-concentrating hormone] and de novo sequenced 23 novel ones (e.g., a new beta-PDH isoform and the first B-type allatostatins identified from a non-insect species). Collectively, our results show that diverse and unique complements of hormones, including many previously unknown peptides, are present in the SG and PO of C. productus. Moreover, our study sets the stage for future biochemical and physiological studies of these molecules and ultimately the elucidation of the role(s) they play in hormonal control in C. productus.
机译:在甲壳动物中,循环激素会影响许多生理过程。两个化合物的来源是两个神经内分泌器官,即窦腺(SG)和心包膜器官(PO)。作为确定由血淋巴传播的物质在蟹癌产品中所起作用的第一步,我们表征了其SG和PO的激素补体。我们通过透射电子显微镜显示,组成每个位点的神经末梢具有密集的核和/或电子透明的囊泡,表明两种结构的生物活性分子具有多种互补性。通过使用免疫组织化学,我们显示出小分子递质,胺和肽属于这些组织中存在的激素,在两个位点之间有许多差异分布(例如PO中的血清素,但SG则不然)。通过几种质谱(MS)方法,我们鉴定了许多负责免疫标记的肽,并研究了SG和PO中不存在抗体的肽。通过使用质谱,我们鉴定了39种已知的肽[例如,β色素分散激素(β-PDH),甲壳类心脏活性肽和红色素浓缩激素]和从头开始测序的23种新肽(例如,新的β-PDH异构体和从非昆虫物种中鉴定出的首批B型allatostatin)。总的来说,我们的结果表明,荷尔蒙梭菌的SG和PO中存在多种独特的激素补体,包括许多以前未知的肽。此外,我们的研究为这些分子的未来生化和生理学研究奠定了基础,并最终阐明了它们在生产梭状芽胞杆菌的激素控制中所起的作用。

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