Perrin Marilyn H, Tan Laura A, Vaughan Joan M, Lewis Kathy A, Donaldson Cynthia J, Miller Charleen, Erchegyi Judit, Rivier Jean E, Sawchenko Paul E
Clayton Foundation Laboratories for Peptide Biology (M.H.P., J.M.V., K.A.L., C.J.D., C.M., J.E., J.E.R., P.E.S.) and Laboratory of Neuronal Structure and Function (L.A.T., P.E.S.), The Salk Institute for Biological Studies, La Jolla, California.
Clayton Foundation Laboratories for Peptide Biology (M.H.P., J.M.V., K.A.L., C.J.D., C.M., J.E., J.E.R., P.E.S.) and Laboratory of Neuronal Structure and Function (L.A.T., P.E.S.), The Salk Institute for Biological Studies, La Jolla, California
J Pharmacol Exp Ther. 2015 May;353(2):307-17. doi: 10.1124/jpet.114.222307. Epub 2015 Mar 3.
The corticotropin-releasing factor (CRF) peptide family comprises the mammalian peptides CRF and the urocortins as well as frog skin sauvagine and fish urophyseal urotensin. Advances in understanding the roles of the CRF ligand family and associated receptors have often relied on radioreceptor assays using labeled CRF ligands. These assays depend on stable, high-affinity CRF analogs that can be labeled, purified, and chemically characterized. Analogs of several of the native peptides have been used in this context, most prominently including sauvagine from the frog Phyllomedusa sauvageii (PS-Svg). Because each of these affords both advantages and disadvantages, new analogs with superior properties would be welcome. We find that a sauvagine-like peptide recently isolated from a different frog species, Pachymedusa dacnicolor (PD-Svg), is a high-affinity agonist whose radioiodinated analog, [(125)ITyr(0)-Glu(1), Nle(17)]-PD-Svg, exhibits improved biochemical properties over those of earlier iodinated agonists. Specifically, the PD-Svg radioligand binds both CRF receptors with comparably high affinity as its PS-Svg counterpart, but detects a greater number of sites on both type 1 and type 2 receptors. PD-Svg is also ∼10 times more potent at stimulating cAMP accumulation in cells expressing the native receptors. Autoradiographic localization using the PD-Svg radioligand shows robust specific binding to rodent brain and peripheral tissues that identifies consensus CRF receptor-expressing sites in a greater number and/or with greater sensitivity than its PS-Svg counterpart. We suggest that labeled analogs of PD-Svg may be useful tools for biochemical, structural, pharmacological, and anatomic studies of CRF receptors.
促肾上腺皮质激素释放因子(CRF)肽家族包括哺乳动物的CRF肽和尿皮质素,以及蛙皮中的铃蟾肽和鱼的尾垂体后叶加压素。在理解CRF配体家族及其相关受体作用方面的进展,常常依赖于使用标记的CRF配体的放射受体分析。这些分析依赖于能够被标记、纯化和进行化学表征的稳定、高亲和力的CRF类似物。几种天然肽的类似物已被用于此,其中最突出的包括来自叶泡蛙(Phyllomedusa sauvageii,PS-Svg)的铃蟾肽。由于这些类似物都有优点和缺点,具有更优异特性的新类似物将是受欢迎的。我们发现,最近从另一种蛙类物种达氏厚蹼蟾(Pachymedusa dacnicolor,PD-Svg)中分离出的一种铃蟾肽样肽是一种高亲和力激动剂,其放射性碘化类似物[(125)ITyr(0)-Glu(1),Nle(17)]-PD-Svg,与早期碘化激动剂相比,具有更好的生化特性。具体而言,PD-Svg放射性配体与两种CRF受体结合的亲和力与PS-Svg类似物相当高,但在1型和2型受体上检测到的位点数量更多。PD-Svg在刺激表达天然受体的细胞中cAMP积累方面的效力也比PS-Svg高约10倍。使用PD-Svg放射性配体的放射自显影定位显示,其与啮齿动物脑和外周组织有强烈的特异性结合,比PS-Svg类似物能以更多数量和/或更高灵敏度识别表达CRF受体的共有位点。我们认为,PD-Svg的标记类似物可能是用于CRF受体生化、结构、药理学和解剖学研究的有用工具。