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首页> 外文期刊>The Journal of Experimental Biology >The specific binding sites of eyestalk- and pericardial organ-crustacean hyperglycaemic hormones (CHHs) in multiple tissues of the blue crab, Callinectes sapidus
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The specific binding sites of eyestalk- and pericardial organ-crustacean hyperglycaemic hormones (CHHs) in multiple tissues of the blue crab, Callinectes sapidus

机译:蓝蟹Callinectes sapidus多个组织中的眼柄和心包器官-甲壳类高血糖激素(CHHs)的特异性结合位点

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摘要

Crustacean hyperglycaemic hormone from the pericardial organ (PO-CHH) is a CHH-related neuropeptide but its function and target tissues are not known in crustaceans. To investigate this issue, we employed radiolabelled ligand binding and cGMP assays, using eyestalk-CHH (ES-CHH) as a reference neuropeptide. The membranes were prepared from various tissues of Callinectes sapidus: hepatopancreas, hindgut, midgut, gills, heart, abdominal muscles and scaphognathites. Like ES-CHH, recombinant PO-CHH (rPO-CHH) specifically bound to the membranes of scaphognathites=abdominal muscles>midgut>gills> heart>hindgut and hepatopancreas (list order corresponds to the number of binding sites). The specific binding sites of (125)I-ES-CHH in hepatopancreas and gills were saturable and displaceable. The abdominal muscle membrane binding sites were specific and saturable to both CHHs. These binding sites were displaced by homologous neuropeptides, but poorly displaced by the heterologous counterpart. As for the second messenger, the expected increment (3- to >20-fold) in the amount of cGMP produced by ES-CHH was noted in most tissues tested except midgut. Recombinant PO-CHH increased cGMP production 1.5- to 4-fold in scaphognathites, heart, midgut, hindgut and abdominal muscles. The results obtained from the binding study suggest that PO-CHH also has multiple target tissues of which abdominal muscles and scaphognathites are the primary ones. The differences in the primary amino acid sequences of PO-CHH and ES-CHH, particularly in the C-terminal region and in the amidation at C-terminus, may contribute to the truncated responses of hyperglycaemia, cGMP stimulation and binding affinity.
机译:来自心包器官的甲壳动物高血糖激素(PO-CHH)是CHH相关的神经肽,但在甲壳动物中尚不知道其功能和靶组织。为了研究这个问题,我们使用了眼部CHH(ES-CHH)作为参考神经肽,采用了放射性标记的配体结合和cGMP分析。膜是从saCallinectes的各种组织制备的:肝胰腺,后肠,中肠,g,心脏,腹肌和肩cap骨。像ES-CHH一样,重组PO-CHH(rPO-CHH)特异性结合至肩cap骨=腹肌>中肠> ill>心脏>后肠和肝胰腺的膜(列表顺序对应于结合位点的数量)。 (125)I-ES-CHH在肝胰腺和腮中的特异性结合位点是饱和且可置换的。腹肌膜结合位点对两个CHHs都是特异性的和饱和的。这些结合位点被同源神经肽置换,但是被异源对应物置换很差。至于第二个信使,除中肠外,在大多数测试的组织中都注意到了ES-CHH产生的cGMP量的预期增量(3至20倍)。重组PO-CHH在scaphognathite,心脏,中肠,后肠和腹肌中将cGMP产量提高了1.5到4倍。从结合研究中获得的结果表明,PO-CHH还具有多个靶组织,其中主要是腹部肌肉和肩cap石。 PO-CHH和ES-CHH的一级氨基酸序列的差异,特别是在C端区域和C端酰胺化的差异,可能会导致高血糖,cGMP刺激和结合亲和力的截短反应。

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