Siegenthaler G, Saurat J H
Clinique de Dermatologie, Hôpital Cantonal Universitaire, Genève, Suisse.
Skin Pharmacol. 1991;4(3):132-41. doi: 10.1159/000210939.
Cellular retinoid-binding proteins play an important physiological role in the mode of action of retinoids upstream from the nuclear receptors. Tritiated analogues of retinol (ROL) and retinoic acid corresponding to substituted benzo[b]thiophene (CD-270) alcohol and carboxylic acid, respectively, were used for the binding studies of the cellular retinoic acid-(CRABP-) and retinol-(CRBP-) binding proteins in human epidermal cells and serum retinol-binding protein (RBP). We show that [3H]CD-270 carboxylic acid binds specifically to CRABP, whereas the alcohol derivative binds strongly to CRBP. However, the low amount of CRABP present concomitantly with CRBP suggests that [3H]CD-270 alcohol might be oxidized into minute amounts of the corresponding carboxylic acid derivative. The acidic character of the alcohol goup due to the aromatic ring of CD-270 might also support a possible binding to CRABP. In contrast, both derivatives show no affinity to RBP. These results suggest that the binding site of RBP is more restrictive to the retinoyl moiety than the binding site of cellular retinoid-binding proteins and therefore tolerates less chemical modification on the hydrophobic part of the ROL molecule. Moreover, when using these derivatives as ligands 2.4 times more CRABP and 3.9 times more CRBP could be measured with the PAGE technique as compared when using the natural [3H]ligands. The CD-270 derivatives might therefore be used as stable ligands for the study of both CRBP and CRABP. Since CD-270(OH) binds to the CRBP this may lead to the development of new synthetic analogues of ROL which could be used as tools for the study of the role of CRBP in the transport and metabolism of ROL.
细胞视黄醇结合蛋白在核受体上游的视黄醇作用模式中发挥着重要的生理作用。分别对应于取代苯并[b]噻吩(CD - 270)醇和羧酸的视黄醇(ROL)和视黄酸的氚化类似物,用于人表皮细胞中细胞视黄酸结合蛋白(CRABP)和视黄醇结合蛋白(CRBP)以及血清视黄醇结合蛋白(RBP)的结合研究。我们发现[3H]CD - 270羧酸特异性结合CRABP,而醇衍生物则与CRBP强烈结合。然而,与CRBP同时存在的CRABP量较少,这表明[3H]CD - 270醇可能被氧化为微量的相应羧酸衍生物。由于CD - 270的芳香环导致醇基团具有酸性,这也可能支持其与CRABP的可能结合。相比之下,两种衍生物对RBP均无亲和力。这些结果表明,RBP的结合位点对视黄酰部分的限制比对细胞视黄醇结合蛋白的结合位点更大,因此对ROL分子疏水部分的化学修饰耐受性更低。此外,当使用这些衍生物作为配体时,与使用天然[3H]配体相比,PAGE技术可检测到的CRABP多2.4倍,CRBP多3.9倍。因此,CD - 270衍生物可作为研究CRBP和CRABP的稳定配体。由于CD - 270(OH)与CRBP结合,这可能会导致开发新的ROL合成类似物,可作为研究CRBP在ROL运输和代谢中作用的工具。