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发育期暴露于紫外线过滤剂4-甲基亚苄基樟脑后大鼠子宫中雌激素靶基因调控及共激活因子表达

Estrogen target gene regulation and coactivator expression in rat uterus after developmental exposure to the ultraviolet filter 4-methylbenzylidene camphor.

作者信息

Durrer Stefan, Maerkel Kirsten, Schlumpf Margret, Lichtensteiger Walter

机构信息

Institute of Pharmacology and Toxicology, University of Zurich, Switzerland.

出版信息

Endocrinology. 2005 May;146(5):2130-9. doi: 10.1210/en.2004-1272. Epub 2005 Feb 10.

DOI:10.1210/en.2004-1272
PMID:15705771
Abstract

Because the estrogen receptor (ER) ligand type influences transactivation, it is important to obtain information on molecular actions of nonclassical ER agonists. UV filters from cosmetics represent new classes of endocrine active chemicals, including the preferential ER beta ligands 4-methylbenzylidene camphor (4-MBC) and 3-benzylidene camphor. We studied estrogen target gene expression in uterus of Long Evans rats after developmental exposure to 4-MBC (0.7, 7, 24, and 47 mg/kg x d) administered in feed to the parent generation before mating, during pregnancy and lactation, and to the offspring until adulthood. 4-MBC altered steady-state levels of mRNAs encoding for ER alpha, ER beta, progesterone receptor (PR), IGF-I, androgen receptor, determined by real-time RT-PCR in uterus of 12-wk-old offspring. Western-blot analyses of the same tissue homogenates indicated changes in ER alpha and PR but not ER beta proteins. To assess sensitivity to estradiol (E2), offspring were ovariectomized on d 70, injected with E2 (10 or 50 microg/kg sc) on d 84, and killed 6 h later. Acute up-regulation of PR and IGF-I and down-regulation of ER alpha and androgen receptor by E2 were dose-dependently reduced in 4-MBC-exposed rats. The reduced response to E2 was accompanied by reduced coactivator SRC-1 mRNA and protein levels. Our data indicate that developmental exposure to 4-MBC affects the regulation of estrogen target genes and the expression of nuclear receptor coregulators in uterus at mRNA and protein levels.

摘要

由于雌激素受体(ER)配体类型会影响反式激活,因此获取非经典ER激动剂分子作用的信息很重要。化妆品中的紫外线过滤剂代表了新型内分泌活性化学物质,包括优先的ERβ配体4-甲基亚苄基樟脑(4-MBC)和3-亚苄基樟脑。我们研究了Long Evans大鼠在发育过程中暴露于4-MBC(0.7、7、24和47 mg/kg×d)后的子宫中雌激素靶基因表达情况,4-MBC通过在交配前、怀孕和哺乳期给亲代喂食,并给后代喂食直至成年。通过实时RT-PCR测定12周龄后代子宫中编码ERα、ERβ、孕激素受体(PR)、IGF-I、雄激素受体的mRNA稳态水平,4-MBC使其发生了改变。对相同组织匀浆的蛋白质印迹分析表明ERα和PR蛋白发生了变化,但ERβ蛋白未变。为了评估对雌二醇(E2)的敏感性,在第70天对后代进行卵巢切除,在第84天注射E2(10或50μg/kg皮下注射),并在6小时后处死。在暴露于4-MBC的大鼠中,E2对PR和IGF-I的急性上调以及对ERα和雄激素受体的下调呈剂量依赖性降低。对E2反应的降低伴随着共激活因子SRC-1 mRNA和蛋白水平的降低。我们的数据表明,发育过程中暴露于4-MBC会在mRNA和蛋白质水平上影响子宫中雌激素靶基因的调控以及核受体共调节因子的表达。

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