Scala S, Budillon A, Zhan Z, Cho-Chung Y S, Jefferson J, Tsokos M, Bates S E
Medicine Branch, National Cancer Institute, Bethesda, Maryland 20892, USA.
J Clin Invest. 1995 Aug;96(2):1026-34. doi: 10.1172/JCI118088.
8-Cl-cAMP, a site-selective analogue of cAMP, decreased mdr-1 expression in multidrug-resistant human breast cancer cells. A sixfold reduction of mdr-1 mRNA expression by 8-Cl-cAMP began within 8 h of treatment and was associated with a decrease in the synthesis of P-glycoprotein and with an increase in vinblastine accumulation. A reduction in mdr-1 expression after 8-Cl-cAMP treatment was also observed in multidrug-resistant human ovarian cancer cell lines. 8-Cl-cAMP is known to change the ratio between the two regulatory subunits, RI and RII, of protein kinase A (PKA). We observed that RI alpha decreased within 24 h of 8-Cl-cAMP treatment, that RII beta increased after as few as 3 h of treatment, and that PKA catalytic activity remained unchanged during 48 h of 8-Cl-cAMP treatment. The results are consistent with the hypothesis that mdr-1 expression is regulated in part by changes in PKA isoenzyme levels. Although 8-Cl-cAMP has been used to differentiate cells in other model systems, the only differentiating effect that could be detected after 8-Cl-cAMP treatment in the MCF-7TH cells was an increase in cytokeratin expression. Evidence that the reduction of mdr-1 mRNA occurred at the level of gene transcription was obtained by measuring chloramphenicol acetyltransferase (CAT) mRNA in MCF-7TH cells transfected with an mdr-1 promoter-CAT construct prior to 8-Cl-cAMP treatment. Thus, 8-Cl-cAMP is able to downregulate mdr-1 expression and suggests a new approach to reversal of drug resistance in human breast cancer.
8-氯-cAMP是cAMP的一种位点选择性类似物,可降低多药耐药人乳腺癌细胞中的mdr-1表达。8-氯-cAMP处理8小时内可使mdr-1 mRNA表达降低6倍,这与P-糖蛋白合成减少及长春碱蓄积增加有关。在多药耐药人卵巢癌细胞系中也观察到8-氯-cAMP处理后mdr-1表达降低。已知8-氯-cAMP可改变蛋白激酶A(PKA)两个调节亚基RI和RII之间的比例。我们观察到,8-氯-cAMP处理24小时内RIα减少,处理仅3小时后RIIβ增加,且在8-氯-cAMP处理48小时内PKA催化活性保持不变。这些结果与mdr-1表达部分受PKA同工酶水平变化调节的假说一致。尽管8-氯-cAMP已用于其他模型系统中的细胞分化,但在MCF-7TH细胞中8-氯-cAMP处理后唯一可检测到的分化效应是细胞角蛋白表达增加。通过在8-氯-cAMP处理前用mdr-1启动子-CAT构建体转染的MCF-7TH细胞中测量氯霉素乙酰转移酶(CAT)mRNA,获得了mdr-1 mRNA减少发生在基因转录水平的证据。因此,8-氯-cAMP能够下调mdr-1表达,并为逆转人乳腺癌的耐药性提供了一种新方法。