首页> 外文期刊>Bulletin of experimental biology and medicine >Regulation of the Melanocortin-Sensitive Adenylate Cyclase System by N-Acylated Peptide 71-82 of Type 4 Melanocortin Receptor
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Regulation of the Melanocortin-Sensitive Adenylate Cyclase System by N-Acylated Peptide 71-82 of Type 4 Melanocortin Receptor

机译:由4型黑酰胺肽71-82的黑色激素敏感腺苷酸环酶系统调节Melanocortin受体的N-酰化肽71-82

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The peptides structurally corresponding in to cytoplasmic loops of G protein-coupled receptors (GPCR) are able to control functional activity of homologous receptors and the corresponding signaling pathways. Modification of these peptides with hydrophobic radicals enhances their biological activity due to penetration of lipophilic derivatives through the membrane and anchoring near their targets, GPCR. We synthesized an N-palmitoylated peptide PalmVal-[Lys-Asn-Lys-Asn-Leu-His-Ser-Pro-(Nle)-Tyr-Phe-Phe71-82]-amide-Palm-Val-(71-82) structurally corresponding to cytoplasmic loop 1 of melanocortin 4 receptor (M4R). We found that in micromolar concentrations it very effectively suppresses stimulation of basal adenylate cyclase activity and basal level of GppNHp binding of heterotrimeric G proteins produced by THIQ and a-melanocyte stimulating hormone (alpha-MSH), agonists of M4R homologous to the peptide, in synaptosomal membranes of rat brain. The peptide Palm-Val-(71-82) also reduced, albeit to a significantly less extent, stimulation of adenylate cyclase and G-proteins by M3R agonist of gamma-MSH, due to high homology of the peptide primary structure to M3R cytoplasmic loop 1. The synthesized peptide with activity of M4R/M3R antagonist can be used for the development of regulators of M4R and M3R and the corresponding biochemical and physiological processes.
机译:在结构上对应于G蛋白偶联受体(GPCR)的细胞质回路的肽能够控制同源受体的功能活性和相应的信号通路。用疏水性自由基改性这些肽增强了它们的生物活性,因为脂质衍生物通过膜通过膜和锚定靠近其靶标,GPCR锚固。我们合成了N-棕榈酰胺肽棕榈(Lys-Asn-Lys-Asn-Leu-His-Ser-Pro-(NLe)-TyR-Phe-PHE71-82] -Amide-Phal-Val-(71-82)对应于黑素旋蛋白4受体(M4R)的细胞质环1的结构上。我们发现,在微摩尔浓度下,它非常有效地抑制由THIQ和α-黑素细胞刺激激素(α-MSH)产生的异映酰基蛋白的基础腺苷酸环酶活性和基础腺苷酸蛋白的基础水平的刺激,M4R与肽同源的M4R同源的激动剂。大鼠大脑突触体膜。肽棕榈 - val-(71-82)也降低,尽管γ-MSH的M3R激动剂通过肽初级结构的高同源性对M3R细胞质环的高同源性,但肽棕榈-val-(71-82)也减少了显着的程度,刺激腺苷酸环酶和G-蛋白1.具有M4R / M3R拮抗剂活性的合成肽可用于发育M4R和M3R的调节剂和相应的生物化学和生理过程。

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