Furihata Tomomi, Hosokawa Masakiyo, Koyano Nao, Nakamura Takahiro, Satoh Tetsuo, Chiba Kan
Laboratory of Pharmacology and Toxicology, Graduate School of Pharmaceutical Sciences, Chiba University, 1-8-1 Inohana, Chuo-ku, Chiba 260-8675, Japan.
Drug Metab Dispos. 2004 Oct;32(10):1170-7. doi: 10.1124/dmd.104.000620. Epub 2004 Jul 21.
Several mouse carboxylesterase (CES) isozymes have been identified, but information about their roles in drug metabolism is limited. In this study, we purified and characterized a mouse CES1 isozyme that was induced by di-(2-ethylhexyl) phthalate. Purified mouse CES1 shared some biological characteristics with other CES isozymes, such as molecular weight of a subunit and isoelectronic point. In addition, purified mouse CES1 behaved as a trimer, a specific characteristic of CES1A subfamily isozymes. The purified enzyme possessed temocapril hydrolase activity, and it was found to contribute significantly to temocapril hydrolase activity in mouse liver microsomes. To identify the nucleotide sequences coding mouse CES1, antibody screening of a cDNA library was performed. The deduced amino acid sequence of the obtained cDNA, mCES1, exhibited striking similarity to those of CES1A isozymes. When expressed in Sf9 cells, recombinant mCES1 showed hydrolytic activity toward temocapril, as did purified mouse CES1. Based on these results, together with the findings that recombinant mouse CES1 had the same molecular weight of a subunit, the same isoelectronic point, and the same native protein mass as those of purified mouse CES1, it was concluded that mCES1 encoded mouse CES1. Furthermore, tissue expression profiles of mCES1 were found to be very similar to those of the human CES1 isozyme. This finding, together with our other results, suggests that mCES1 shares many biological properties with the human CES1 isozyme. The present study has provided useful information for study of metabolism and disposition of ester-prodrugs as well as ester-drugs.
已鉴定出几种小鼠羧酸酯酶(CES)同工酶,但关于它们在药物代谢中作用的信息有限。在本研究中,我们纯化并表征了一种由邻苯二甲酸二(2-乙基己基)酯诱导产生的小鼠CES1同工酶。纯化的小鼠CES1与其他CES同工酶具有一些生物学特性,如亚基分子量和等电点。此外,纯化的小鼠CES1表现为三聚体,这是CES1A亚家族同工酶的一个特定特征。纯化的酶具有替莫卡普利水解酶活性,并且发现它对小鼠肝微粒体中的替莫卡普利水解酶活性有显著贡献。为了鉴定编码小鼠CES1的核苷酸序列,对cDNA文库进行了抗体筛选。所获得的cDNA(mCES1)推导的氨基酸序列与CES1A同工酶的氨基酸序列具有显著相似性。当在Sf9细胞中表达时,重组mCES1对替莫卡普利表现出水解活性,纯化的小鼠CES1也是如此。基于这些结果,以及重组小鼠CES1与纯化的小鼠CES1具有相同的亚基分子量、相同的等电点和相同的天然蛋白质质量这一发现,得出结论:mCES1编码小鼠CES1。此外,发现mCES1的组织表达谱与人CES1同工酶的组织表达谱非常相似。这一发现与我们的其他结果一起表明,mCES1与人CES1同工酶具有许多生物学特性。本研究为酯前药以及酯类药物的代谢和处置研究提供了有用信息。