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Cyclotides isolated from an ipecac root extract antagonize the corticotropin releasing factor type 1 receptor

机译:从双根根提取物中分离出的环氧化物拮抗促肾上腺皮质激素释放因子1型受体

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摘要

Cyclotides are plant derived, cystine-knot stabilized peptides characterized by their natural abundance, sequence variability and structural plasticity. They are abundantly expressed in Rubiaceae, Psychotrieae in particular. Previously the cyclotide kalata B7 was identified to modulate the human oxytocin and vasopressin G protein-coupled receptors (GPCRs), providing molecular validation of the plants’ uterotonic properties and further establishing cyclotides as valuable sources for novel GPCR ligand design. In this study we screened a cyclotide extract derived from the root powder of the South American medicinal plant ipecac (Carapichea ipecacuanha) for its GPCR modulating activity of the corticotropin-releasing factor type 1 receptor (CRF1R). We identified and characterized seven novel cyclotides. One cyclotide, caripe 8, isolated from the most active fraction, was further analyzed and found to antagonize the CRF1R. A nanomolar concentration of this cyclotide (260 nM) reduced CRF potency by ~4.5-fold. In contrast, caripe 8 did not inhibit forskolin-, or vasopressin-stimulated cAMP responses at the vasopressin V2 receptor, suggesting a CRF1R-specific mode-of-action. These results in conjunction with our previous findings establish cyclotides as modulators of both class A and class B GPCRs. Given the diversity of cyclotides, our data point to other cyclotide-GPCR interactions as potentially important sources of drug-like molecules.
机译:环肽是植物来源的胱氨酸结稳定的肽,其特征在于其天然丰度,序列变异性和结构可塑性。它们在茜草科,特别是精神科中大量表达。以前,环肽kalata B7被认为可以调节人催产素和加压素G蛋白偶联受体(GPCR),从而为植物的子宫内膜渗透性提供分子验证,并进一步将环氧化物确立为新颖GPCR配体设计的有价值来源。在这项研究中,我们筛选了一种从南美药用​​植物七加子(Carapichea ipecacuanha)根粉中提取的环氧化物提取物,该提取物对促肾上腺皮质激素释放因子1型受体(CRF1R)的GPCR调节活性。我们确定并表征了七个新颖的环肽。进一步分析了从活性最高的部分中分离出来的一个环素,即长寿花8,并发现它们与CRF1R拮抗。纳摩尔浓度的这种环化物(260 nM)使CRF效​​能降低了约4.5倍。相反,Caripe 8并未抑制血管加压素V2受体处的福司可林或血管加压素刺激的cAMP反应,表明存在CRF1R特异性作用方式。这些结果与我们先前的发现相结合,建立了作为A类和B类GPCR调节剂的环氧化物。考虑到环氧化物的多样性,我们的数据表明其他环肽-GPCR相互作用是类药物分子潜在的重要来源。

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