Effect of MRP2 and MRP3 Polymorphisms on Anastrozole Glucuronidation and MRP2 and MRP3 Gene Expression in Normal Liver Samples.

V. Edavana, R. Penney, A. Yao-Borengasser, Athena Starlard-Davenport, I. Dhakal, Susan A Kadlubar
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引用次数: 6

Abstract

Anastrozole is an aromatase inhibitor (AI) used as adjuvant therapy for breast cancer. Anastrozole is subject to direct glucuronidation catalyzed by UDP-glucuronosyltransferase1A4 (UGT1A4). Interindividual variability in anastrozole glucuronidation may be affected by UGT1A4 SNPs. Interplay between drug metabolizing genes such as UGT1A4 and transporter genes may also be affected by genetic variability. Thus, we hypothesize that genetic variability in MRPs could influence anastrozole glucuronidation. The correlation between UGT1A4 and MRP2 or MRP3 transporter gene expressions and the correlation between MRP2 or MRP3 mRNA and anastrozole glucuronidation were analyzed in normal human liver samples. MRP2 and MRP3 mRNA levels were significantly correlated with UGT1A4 mRNA, with anastrozole glucuronidation and with each other (p<0.05). The data also demonstrated that MRP2 SNPs are positively correlated with MRP2 mRNA expression, while there was no association between MRP3 SNPs from this study and MRP3 expression. Significant correlations (p<0.05) between certain MRP2 SNPs (3972C>T, 2366C>T and -24C>T) and anastrozole glucuronidation were observed. There were no observed correlations between MRP3 SNPs and anastrozole glucuronidation. MRP2 polymorphisms have been identified as playing a role in the disposition of other drugs, and the data presented here indicate for the first time that MRP2 SNPs could influence anastrozole metabolism and contribute to interindividual variation in treatment responses.
MRP2和MRP3基因多态性对正常肝脏阿那曲唑葡萄糖醛酸化及MRP2和MRP3基因表达的影响
阿那曲唑是一种芳香酶抑制剂(AI),用于乳腺癌的辅助治疗。阿那曲唑是由udp -葡萄糖醛酸转移酶1a4 (UGT1A4)催化的直接糖醛酸化反应。UGT1A4 snp可能影响阿那曲唑葡萄糖醛酸化的个体间变异。药物代谢基因(如UGT1A4)与转运基因之间的相互作用也可能受到遗传变异的影响。因此,我们假设MRPs的遗传变异可能影响阿那曲唑葡萄糖醛酸化。分析正常人肝脏中UGT1A4与MRP2或MRP3转运蛋白基因表达的相关性,以及MRP2或MRP3 mRNA与阿那曲唑葡萄糖醛酸化的相关性。MRP2和MRP3 mRNA水平与UGT1A4 mRNA水平显著相关,与阿那曲唑葡萄糖醛酸化密切相关,并相互作用(pT, 2366C>T和-24C>T),观察阿那曲唑葡萄糖醛酸化。没有观察到MRP3 snp与阿那曲唑葡萄糖醛酸化之间的相关性。MRP2多态性已被确定在其他药物的处置中发挥作用,本文提供的数据首次表明,MRP2 snp可能影响阿那曲唑的代谢,并导致治疗反应的个体间差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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