Mgbonyebi O P, Smothers C T, Mrotek J J
Physiology Department, Meharry Medical College, Nashville, TN 37208.
Cell Biol Toxicol. 1994 Feb;10(1):35-43. doi: 10.1007/BF00757185.
In previous studies cadmium chloride (CdCl2) nonlethally inhibited Y-1 mouse adrenal tumor cell 20-dihydroxyprogesterone (20DHP) secretion, affecting unstimulated and stimulated steroidogenic pathway sites differently. In addition, dibutyryl cAMP-stimulated 20DHP secretion was unaffected by CdCl2, while the site of the unstimulated effect was indirectly shown to involve steps between endogenous cholesterol utilization and 20-hydroxycholesterol association with mitochondrial cytochrome P450 side-chain cleavage enzyme. In the present study we determined CdCl2 effects on plasma membrane sites preceding pre-dbcAMP-stimulation of 20DHP secretion. Y-1 cells were incubated 0.5 h in medium with or without cadmium (using the concentration that inhibited adrenocorticotropin- (ACTH)-stimulated steroid secretion by 50%) together with exogenously added maximally stimulating concentrations of ACTH, cholera toxin, forskolin, or adenosine triphosphate. Cholera toxin, forskolin and ATP bypass specific plasma membrane sites involved in the synthesis of intracellular cAMP and activate the steroid hormone biosynthetic pathway. Cadmium effects on ACTH-stimulated endogenous cAMP secretion were also examined. CdCl2 significantly reduced Y-1 cell 20DHP secretion following exposure to ACTH, cholera toxin, forskolin, and ATP; it also significantly decreased endogenous cAMP secretion into culture medium. These data may be interpreted to suggest that CdCl2 altered Y-1 cell regulation of adenyl cyclase activity, which reduced cAMP-activated cholesterol uptake by mitochondria as a consequence.
在先前的研究中,氯化镉(CdCl2)以非致死剂量抑制Y-1小鼠肾上腺肿瘤细胞分泌20-二羟基孕酮(20DHP),对未受刺激和受刺激的类固醇生成途径位点的影响不同。此外,二丁酰环磷腺苷(dbcAMP)刺激的20DHP分泌不受CdCl2影响,而未受刺激效应的位点间接表明涉及内源性胆固醇利用与20-羟胆固醇与线粒体细胞色素P450侧链裂解酶结合之间的步骤。在本研究中,我们确定了CdCl2对dbcAMP刺激20DHP分泌之前质膜位点的影响。将Y-1细胞在含有或不含有镉的培养基中孵育0.5小时(使用抑制促肾上腺皮质激素(ACTH)刺激的类固醇分泌50%的浓度),同时外源添加最大刺激浓度的ACTH、霍乱毒素、福斯可林或三磷酸腺苷。霍乱毒素、福斯可林和ATP绕过参与细胞内cAMP合成的特定质膜位点,激活类固醇激素生物合成途径。还研究了CdCl2对ACTH刺激的内源性cAMP分泌的影响。暴露于ACTH、霍乱毒素、福斯可林和ATP后,CdCl2显著降低Y-1细胞20DHP分泌;它还显著减少了培养基中内源性cAMP的分泌。这些数据可以解释为表明CdCl2改变了Y-1细胞对腺苷酸环化酶活性的调节,从而导致cAMP激活的线粒体胆固醇摄取减少。