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Corazonin receptor signaling in ecdysis initiation

机译:Corazonin受体信号传导在蜕膜形成中的作用

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摘要

Corazonin is a highly conserved neuropeptide hormone of widespread occurrence in insects yet is associated with no universally recognized function. After discovery of the corazonin receptor in Drosophila, we identified its ortholog in the moth, Manduca sexta, as a prelude to physiological studies. The corazonin receptor cDNA in M. sexta encodes a protein of 436 amino acids with seven putative transmembrane domains and shares common ancestry with its Drosophila counterpart. The receptor exhibits high sensitivity and selectivity for corazonin when expressed in Xenopus oocytes (EC50 approximate to 200 pM) or Chinese hamster ovary cells (EC50 approximate to 75 pM). Northern blot analysis locates the receptor in peripheral endocrine Inka cells, the source of preecdysis- and ecdysis-triggering hormones. Injection of corazonin into pharate larvae elicits release of these peptides from Inka cells, which induce precocious preecdysis and ecdysis behaviors. In vitro exposure of isolated Inka cells to corazonin (25-100 pM) induces preecdysis- and ecdysis-triggering hormone secretion. Using corazonin receptor as a biosensor, we show that corazonin concentrations in the hemolymph 20 min before natural preecdysis onset range from 20 to 80 pM and then decline over the next 30-40 min. These findings support the role of corazonin signaling in initiation of the ecdysis behavioral sequence. We propose a model for pepticle-mediated interactions between Inka cells and the CNS underlying this process in insect development.
机译:Corazonin是在昆虫中广泛存在的高度保守的神经肽激素,但与普遍公认的功能无关。在果蝇中发现corazonin受体后,我们确定了其在蛾蛾Manduca sexta中的直系同源物,作为生理研究的序幕。性别支原体中的corazonin受体cDNA编码具有七个推定跨膜结构域的436个氨基酸的蛋白质,并与其果蝇对应物具有共同的血统。当在非洲爪蟾卵母细胞(EC50约200 pM)或中国仓鼠卵巢细胞(EC50约75 pM)中表达时,该受体表现出对Corazonin的高敏感性和选择性。 Northern印迹分析在外周内分泌Inka细胞中定位受体,这是促蜕变和促蜕变激素的来源。将corazonin注射到噬菌体幼虫中会引发这些肽从Inka细胞中释放,从而诱导早熟的蜕皮和蜕皮行为。离体的印加细胞在体外暴露于corazonin(25-100 pM)中会诱发促蜕变和促蜕变的激素分泌。使用corazonin受体作为生物传感器,我们显示自然先兆发作前20分钟血淋巴中corazonin的浓度范围为20至80 pM,然后在接下来的30-40分钟内下降。这些发现支持corazonin信号传导在蜕皮行为序列启动中的作用。我们提出了Inka细胞和中枢神经系统在昆虫发育过程中潜在的消化作用之间相互作用的模型。

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