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首页> 外文期刊>The Journal of Steroid Biochemistry and Molecular Biology >Calmidazolium and other imidazole compounds affect steroidogenesis in Y1 cells: lack of involvement of the peripheral-type benzodiazepine receptor.
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Calmidazolium and other imidazole compounds affect steroidogenesis in Y1 cells: lack of involvement of the peripheral-type benzodiazepine receptor.

机译:咪唑鎓和其他咪唑化合物影响Y1细胞中的类固醇生成:外围类型的苯二氮卓受体缺乏参与。

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Calmidazolium potently stimulated steroidogenesis in a mouse adrenocortical Y1 cell line, in a Ca(2+)-independent manner, an effect similar to that reported by Choi and Cooke [1] for rat primary adrenocortical and Leydig cells. Calmidazolium analogues, econazole and miconazole, were shown to inhibit both this calmidazolium-stimulated rate and the endogenous rate of steroidogenesis. In determining the mechanism by which imidazole compounds affect steroidogenesis, they were found not to act directly on the mitochondrial Cyt P-450scc enzyme, making it likely that they act instead on the intramitochondrial transport of cholesterol. Using competition binding studies, calmidazolium, econazole and miconazole were subsequently identified as novel ligands for the peripheral-type benzodiazepine receptor (PBR). Econazole and miconazole were found to inhibit stimulation by PK 11195 (a specific PBR ligand) of steroidogenesis, whereas treatment of the cells with calmidazolium and PK 11195 at the same time resulted in an additive stimulatory effect on steroidogenesis. These results suggest that the effects of these substituted imidazoles on steroidogenesis in Y1 cells is not mediated through their interaction with the PBR.
机译:钙咪唑有效地刺激小鼠肾上腺皮质Y1细胞系中的类固醇生成,并以Ca(2+)独立的方式,类似于Choi和Cooke [1]对大鼠原代肾上腺皮质和Leydig细胞的报道。钙咪唑鎓类似物,益康唑和咪康唑,被显示出既抑制了该咪唑鎓刺激的速率,又抑制了类固醇生成的内源性速率。在确定咪唑化合物影响类固醇生成的机制时,发现它们并不直接作用于线粒体Cyt P-450scc酶,因此很可能它们作用于胆固醇的线粒体内转运。使用竞争结合研究,随后确定了卡地咪唑,益康唑和咪康唑是外周型苯并二氮杂receptor受体(PBR)的新型配体。发现益康唑和咪康唑抑制了PK 11195(一种特定的PBR配体)对类固醇生成的刺激,而同时用卡地咪唑和PK 11195处理细胞则对类固醇生成产生了附加的刺激作用。这些结果表明,这些取代的咪唑对Y1细胞中类固醇生成的影响不是通过它们与PBR的相互作用来介导的。

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