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细胞色素P450 1A1和1A2表达:比较“人源化”小鼠品系与野生型小鼠;比较人源和鼠源肝癌衍生细胞系。

CYP1A1 and CYP1A2 expression: comparing 'humanized' mouse lines and wild-type mice; comparing human and mouse hepatoma-derived cell lines.

作者信息

Uno Shigeyuki, Endo Kaori, Ishida Yuji, Tateno Chise, Makishima Makoto, Yoshizato Katsutoshi, Nebert Daniel W

机构信息

Department of Biochemistry, Nihon University School of Medicine, 30-1 Oyaguchikami-cho, Itabashi-ku, Tokyo 173-8610, Japan.

出版信息

Toxicol Appl Pharmacol. 2009 May 15;237(1):119-26. doi: 10.1016/j.taap.2009.03.001. Epub 2009 Mar 10.

Abstract

Human and rodent cytochrome P450 (CYP) enzymes sometimes exhibit striking species-specific differences in substrate preference and rate of metabolism. Human risk assessment of CYP substrates might therefore best be evaluated in the intact mouse by replacing mouse Cyp genes with human CYP orthologs; however, how "human-like" can human gene expression be expected in mouse tissues? Previously a bacterial-artificial-chromosome-transgenic mouse, carrying the human CYP1A1_CYP1A2 locus and lacking the mouse Cyp1a1 and Cyp1a2 orthologs, was shown to express robustly human dioxin-inducible CYP1A1 and basal versus inducible CYP1A2 (mRNAs, proteins, enzyme activities) in each of nine mouse tissues examined. Chimeric mice carrying humanized liver have also been generated, by transplanting human hepatocytes into a urokinase-type plasminogen activator(+/+)_severe-combined-immunodeficiency (uPA/SCID) line with most of its mouse hepatocytes ablated. Herein we compare basal and dioxin-induced CYP1A mRNA copy numbers, protein levels, and four enzymes (benzo[a]pyrene hydroxylase, ethoxyresorufin O-deethylase, acetanilide 4-hydroxylase, methoxyresorufin O-demethylase) in liver of these two humanized mouse lines versus wild-type mice; we also compare these same parameters in mouse Hepa-1c1c7 and human HepG2 hepatoma-derived established cell lines. Most strikingly, mouse liver CYP1A1-specific enzyme activities are between 38- and 170-fold higher than human CYP1A1-specific enzyme activities (per unit of mRNA), whereas mouse versus human CYP1A2 enzyme activities (per unit of mRNA) are within 2.5-fold of one another. Moreover, both the mouse and human hepatoma cell lines exhibit striking differences in CYP1A mRNA levels and enzyme activities. These findings are relevant to risk assessment involving human CYP1A1 and CYP1A2 substrates, when administered to mice as environmental toxicants or drugs.

摘要

人类和啮齿动物的细胞色素P450(CYP)酶有时在底物偏好和代谢速率方面表现出显著的物种特异性差异。因此,对CYP底物进行人类风险评估时,最好通过用人CYP直系同源基因替换小鼠Cyp基因,在完整的小鼠体内进行评估;然而,在小鼠组织中,人类基因表达能达到多“像人类”呢?此前,一种携带人类CYP1A1_CYP1A2基因座且缺乏小鼠Cyp1a1和Cyp1a2直系同源基因的细菌人工染色体转基因小鼠,在检测的9种小鼠组织中均能强劲表达人类二噁英诱导型CYP1A1以及基础型和诱导型CYP1A2(mRNA、蛋白质、酶活性)。通过将人类肝细胞移植到尿激酶型纤溶酶原激活剂(+/+)_严重联合免疫缺陷(uPA/SCID)品系中,并消融其大部分小鼠肝细胞,也已培育出携带人源化肝脏的嵌合小鼠。在此,我们比较了这两种人源化小鼠品系与野生型小鼠肝脏中基础型和二噁英诱导型CYP1A的mRNA拷贝数、蛋白质水平以及四种酶(苯并[a]芘羟化酶、乙氧基异吩恶唑酮O - 脱乙基酶、乙酰苯胺4 - 羟化酶、甲氧基异吩恶唑酮O - 脱甲基酶);我们还比较了小鼠Hepa - 1c1c7和人HepG2肝癌衍生的既定细胞系中的相同参数。最显著的是,小鼠肝脏CYP1A1特异性酶活性比人类CYP1A1特异性酶活性(每单位mRNA)高38至170倍,而小鼠与人类CYP1A2酶活性(每单位mRNA)彼此相差在2.5倍以内。此外,小鼠和人类肝癌细胞系在CYP1A mRNA水平和酶活性方面均表现出显著差异。这些发现与涉及人类CYP1A1和CYP1A2底物的风险评估相关,当这些底物作为环境毒物或药物给予小鼠时。

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