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Isolation and Functional Characterization of Calcitonin-Like Diuretic Hormone Receptors in Rhodnius prolixus

机译:高山红景天降钙素样利尿激素受体的分离和功能表征

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摘要

Several families of diuretic hormones exist in insects, one of which is the calcitonin-like diuretic hormone (CT/DH) family. CT/DH mediates its effects by binding to family B G-protein coupled receptors (GPCRs). Here we isolate and functionally characterize two R. prolixus CT/DH receptor paralogs (Rhopr-CT/DH-R1 and Rhopr-CT/DH-R2) using a novel heterologous assay utilizing a modified human embryonic kidney 293 (HEK293) cell line. Rhopr-CT/DH-R1 is orthologous to the previously characterized D. melanogaster CT/DH receptor (CG17415) while Rhopr-CT/DH-R2 is orthologous to the D. melanogaster receptor (CG4395), an orphan receptor whose ligand was unknown until now. We determine the cDNA sequences of three splice variants encoding Rhopr-CT/DH-R1 (Rhopr-CT/DH-R1-A, Rhopr-CT/DH-R1-B and Rhopr-CT/DH-R1-C) and two splice variants encoding Rhopr-CT/DH-R2 (Rhopr-CT/DH-R2-A and Rhopr-CT/DH-R2-B). Rhopr-CT/DH-R1-A and Rhopr-CT/DH-R2-A encode truncated receptors that lack six and seven of the characteristic seven transmembrane domains, respectively. Rhopr-CT/DH-R1-B and Rhopr-CT/DH-R1-C, which only differ by 2 amino acids in their C-terminal domain, can both be activated by Rhopr-CT/DH at equal sensitivities (EC50 = 200-300nM). Interestingly, Rhopr-CT/DH-R2-B is much more sensitive to Rhopr-CT/DH (EC50 = 15nM) compared to Rhopr-CT/DH-R1-B/C and also yields a much greater response (amplitude) in our heterologous assay. This is the first study to reveal that insects possess at least two CT/DH receptors, which may be functionally different. Quantitative PCR demonstrates that Rhopr-CT/DH-R1 and Rhopr-CT/DH-R2 have distinct expression patterns, with both receptors expressed centrally and peripherally. Moreover, the expression analysis also identified novel target tissues for this neuropeptide, including testes, ovaries and prothoracic glands, suggesting a possible role for Rhopr-CT/DH in reproductive physiology and development.
机译:昆虫中存在几种利尿激素家族,其中之一是降钙素样利尿激素(CT / DH)家族。 CT / DH通过与B型家族G蛋白偶联受体(GPCR)结合来介导其作用。在这里,我们使用改良的人胚肾293(HEK293)细胞系进行新型异源测定,分离并功能表征两个螺旋藻CT / DH受体旁系同源物(Rhopr-CT / DH-R1和Rhopr-CT / DH-R2)。 Rhopr-CT / DH-R1与先前鉴定的D. melanogaster CT / DH受体(CG17415)直系同源,而Rhopr-CT / DH-R2与D. melanogaster受体(CG4395)直系同源,它的配体未知到现在。我们确定三个编码Rhopr-CT / DH-R1的剪接变体(Rhopr-CT / DH-R1-A,Rhopr-CT / DH-R1-B和Rhopr-CT / DH-R1-C)的cDNA序列和两个编码Rhopr-CT / DH-R2的剪接变体(Rhopr-CT / DH-R2-A和Rhopr-CT / DH-R2-B)。 Rhopr-CT / DH-R1-A和Rhopr-CT / DH-R2-A编码截短的受体,它们分别缺少特征性七个跨膜结构域中的六个和七个。 Rhopr-CT / DH-R1-B和Rhopr-CT / DH-R1-C在其C端结构域中仅相差2个氨基酸,它们都可以被Rhopr-CT / DH以相同的灵敏度激活(EC50 = 200-300nM)。有趣的是,与Rhopr-CT / DH-R1-B / C相比,Rhopr-CT / DH-R2-B对Rhopr-CT / DH(EC50 = 15nM)敏感得多,并且在Rhopr-CT / DH-R2-B / C中产生的响应也更大(幅度)。我们的异源分析。这是第一个揭示昆虫具有至少两个CT / DH受体的功能的第一项研究。定量PCR表明,Rhopr-CT / DH-R1和 Rhopr-CT / DH-R2 具有不同的表达模式,两种受体均在中央和外周表达。此外,表达分析还鉴定了该神经肽的新靶标组织,包括睾丸,卵巢和胸腺,提示Rhopr-CT / DH在生殖生理和发育中可能发挥作用。

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