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首页> 外文期刊>The FEBS journal >Identification and characterization of the adipokinetic hormone/corazonin-related peptide signaling system in Rhodnius prolixus
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Identification and characterization of the adipokinetic hormone/corazonin-related peptide signaling system in Rhodnius prolixus

机译:高山红景天脂肪代谢激素/ corazonin相关肽信号系统的鉴定与表征

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The mammalian gonadotropin-releasing hormone is evolutionarily related to the arthropod adipokinetic hormone and the recently discovered adipokinetic hormone/corazonin-related peptide (ACP). The function of the ACP signaling system in arthropods is currently unknown. In the present study, we identify and characterize the ACP signaling system in the kissing bug Rhodnius prolixus. We isolated the complete cDNA sequence encoding R. prolixus ACP (Rhopr-ACP) and examined its expression pattern. Rhopr-ACP is predominantly expressed in the central nervous system. In particular, it is found in both the brain and corpus cardiacum (CC)/corpora allata (CA) complex. To gain an insight into its role in R. prolixus, we also isolated and functionally characterized cDNA sequences of three splice variants (Rhopr-ACPR-A, B and C) encoding R. prolixus ACP G protein-coupled receptor (Rhopr-ACPR). Rhopr-ACPR-A has only five transmembrane domains, whereas Rhopr-ACPR-B and C have all seven domains. Interestingly, Rhopr-ACPR-A, B and C were all activated by Rhopr-ACP, albeit at different sensitivities, when expressed in Chinese hamster ovary cells stably expressing the human G-protein G16 (CHO/G16). To our knowledge, this is the first study to isolate a truncated receptor cDNA in invertebrates that is functional in a heterologous expression system. Moreover, Rhopr-ACPR-B and C but not Rhopr-ACPR-A can be coupled with Gq alpha subunits. Expression profiling indicates that RhoprACPR is highly expressed in the central nervous system, as well as the CC/CA complex, suggesting that it may control the release of other hormones found in the CC in a manner analogous to gonadotropin-releasing hormone. Temporal expression profiling shows that both Rhopr-ACP and Rhopr-ACPR are upregulated after ecdysis, suggesting that this neuropeptide may be involved in processes associated with post-ecdysis.
机译:哺乳动物促性腺激素释放激素与节肢动物脂肪代谢激素和最近发现的脂肪代谢激素/ corazonin相关肽(ACP)进化相关。 ACP信号系统在节肢动物中的功能目前未知。在本研究中,我们确定和表征接吻小虫Rhodnius prolixus中的ACP信号系统。我们分离了编码螺旋藻ACP(Rhopr-ACP)的完整cDNA序列,并检查了其表达模式。 Rhopr-ACP主要在中枢神经系统中表达。特别是在大脑和心体(CC)/全体(CA)复合体中都可以找到它。为了深入了解其在Pro.prolixus中的作用,我们还分离了三种编码R.prolixus ACP G蛋白偶联受体(Rhopr-ACPR)的剪接变体(Rhopr-ACPR-A,B和C)并在功能上进行了特征化。 Rhopr-ACPR-A仅具有五个跨膜结构域,而Rhopr-ACPR-B和C具有所有七个结构域。有趣的是,当在稳定表达人G蛋白G16(CHO / G16)的中国仓鼠卵巢细胞中表达时,Rhopr-ACPR-A,B和C均被Rhopr-ACP激活,尽管敏感性不同。据我们所知,这是第一个分离无脊椎动物中截短的受体cDNA的研究,该cDNA在异源表达系统中起作用。此外,Rhopr-ACPR-B和C但Rhopr-ACPR-A不能与Gq alpha亚基偶联。表达谱表明,RhoprACPR在中枢神经系统以及CC / CA复合物中高表达,表明它可能以类似于促性腺激素释放激素的方式控制CC中发现的其他激素的释放。时间表达谱分析表明,在蜕皮后,Rhopr-ACP和Rhopr-ACPR均被上调,表明该神经肽可能参与了与蜕皮后相关的过程。

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