Siissalo Sanna, Zhang Hongbo, Stilgenbauer Eric, Kaukonen Ann Marie, Hirvonen Jouni, Finel Moshe
Division of Pharmaceutical Technology, Centre for Drug Research, Faculty of Pharmacy, P.O. Box 56, University of Helsinki, Helsinki, FIN-00014, Finland.
Drug Metab Dispos. 2008 Nov;36(11):2331-6. doi: 10.1124/dmd.108.022335. Epub 2008 Aug 11.
The human colon carcinoma cell line Caco-2 is often used as a model for intestinal drug absorption. To better understand xenobiotic glucuronidation in Caco-2 cells, we have examined the expression levels of different UDP-glucuronosyltransferases (UGTs) in them. The effects of two main factors were investigated, namely, passage number and cell differentiation. Hence, the mRNA levels of 15 human UGTs of subfamilies 1A and 2B were assessed in both undifferentiated and fully differentiated cells at four passage levels: P31, P37, P43, and P49. Quantitative reverse transcriptase-polymerase chain reaction was used to determine the mRNA levels of individual UGTs, and the values were normalized using beta-actin as a reference gene. The results indicate that although passage number in the tested range exerts a mild effect on the expression level of several UGTs, the contribution of cell differentiation is much larger. The expression of nearly all the UGTs that were examined in this study was significantly, sometimes greatly, increased during cell differentiation. UGT1A6 was a distinct exception to this rule, however, because it was already highly expressed in the undifferentiated cells. The mRNA findings were confirmed at the enzyme activity level by measuring the glucuronidation of 1-naphthol, a very good substrate for UGT1A6, as well as estradiol that is not glucuronidated by this enzyme. The results revealed that 1-naphthol glucuronidation activity was high in both the differentiated and undifferentiated cells, whereas estradiol glucuronidation was only detected in the differentiated cells. Thus, Caco-2 cell differentiation plays a major role in UGT expression and ensuing metabolic reactions.
人结肠癌细胞系Caco-2常被用作肠道药物吸收的模型。为了更好地理解Caco-2细胞中的外源性物质葡萄糖醛酸化作用,我们检测了其中不同尿苷二磷酸葡萄糖醛酸基转移酶(UGTs)的表达水平。研究了两个主要因素的影响,即传代次数和细胞分化。因此,在四个传代水平(P31、P37、P43和P49)下,对未分化和完全分化细胞中15种1A和2B亚家族的人UGTs的mRNA水平进行了评估。采用定量逆转录-聚合酶链反应来测定各个UGTs的mRNA水平,并以β-肌动蛋白作为参照基因对数值进行标准化。结果表明,尽管测试范围内的传代次数对几种UGTs的表达水平有轻微影响,但细胞分化的作用要大得多。在本研究中检测的几乎所有UGTs在细胞分化过程中表达均显著增加,有时甚至大幅增加。然而,UGT1A6是个明显的例外,因为它在未分化细胞中已经高表达。通过测量UGT1A6的一种非常好的底物1-萘酚以及该酶不会进行葡萄糖醛酸化的雌二醇的葡萄糖醛酸化作用,在酶活性水平上证实了mRNA的研究结果。结果显示,1-萘酚葡萄糖醛酸化活性在分化和未分化细胞中均较高,而雌二醇葡萄糖醛酸化仅在分化细胞中检测到。因此,Caco-2细胞分化在UGT表达及随后的代谢反应中起主要作用。