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首页> 外文期刊>Toxicological sciences: An official journal of the Society of Toxicology >Teratogen-induced activation of p53 in early postimplantation mouse embryos.
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Teratogen-induced activation of p53 in early postimplantation mouse embryos.

机译:致畸剂诱导的早期植入小鼠胚胎中p53的激活。

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Hyperthermia (HS) and 4-hydroperoxycyclophosphamide (4CP) activate the mitochondrial apoptotic pathway in day 9 mouse embryos. Previous microarray analyses Microarray analyses revealed that several p53 target genes are upregulated after exposure to HS or 4CP, suggesting a role for p53 in teratogen-induced apoptosis. To explore the role of p53, we assessed the activation of p53 in day 9 mouse embryos exposed to HS or 4CP in vitro. Both teratogens induced the accumulation of p53 and phosphorylation of p53 at ser-15, two hallmarks of p53 activation. HS and 4CP also induced an increase in Noxa and Puma mRNAs, transcripts of two known proapoptotic p53 target genes; however, these two teratogens did not induce significant increases in NOXA and PUMA proteins, suggesting that p53 does not activate the mitochondrial apoptotic pathway by transcriptionally upregulating the expression of NOXA and PUMA proteins. HS and 4CP also induced the expression of p21 mRNA and protein, suggesting a role for p53 in teratogen-induced cell cycle arrest. Previously, we also showed that HS and 4CP activate the apoptotic pathway in the embryo proper (head and trunk) but not in the heart. We now show that HS and 4CP induce a robust activation of p53 in the embryo proper but an attenuated induction in the heart. HS and 4CP induce the expression of p21 protein in majority of the cells in the embryo; however, expression of NOXA and PUMA proteins were not significantly induced in heads, hearts, or trunks of day 9 embryos. Overall, our results suggest that p53 may play a transcription-dependent role in teratogen-induced cell cycle arrest but a transcription-independent role in teratogen-induced apoptosis in day 9 mouse embryos exposed to HS or 4CP.
机译:热疗(HS)和4-氢过氧环磷酰胺(4CP)激活第9天小鼠胚胎中的线粒体凋亡途径。先前的微阵列分析微阵列分析显示,暴露于HS或4CP后,一些p53靶基因被上调,表明p53在致畸物诱导的细胞凋亡中的作用。为了探索p53的作用,我们评估了体外暴露于HS或4CP的第9天小鼠胚胎中p53的激活。两种致畸剂都诱导p53在ser-15处积累和磷酸化,这是p53活化的两个标志。 HS和4CP也诱导了Noxa和Puma mRNA的增加,这是两个已知的促凋亡p53靶基因的转录本。然而,这两种致畸物并未引起NOXA和PUMA蛋白的显着增加,这表明p53不会通过转录上调NOXA和PUMA蛋白的表达来激活线粒体凋亡途径。 HS和4CP也诱导p21 mRNA和蛋白的表达,提示p53在致畸剂诱导的细胞周期停滞中起作用。以前,我们还表明,HS和4CP激活胚胎固有(头部和躯干)中的凋亡途径,但不激活心脏中的凋亡途径。我们现在显示,HS和4CP在正常的胚胎中诱导p53的强烈激活,但在心脏中的诱导减弱。 HS和4CP诱导胚胎中大多数细胞中p21蛋白的表达。然而,在第9天胚胎的头部,心脏或躯干中,NOXA和PUMA蛋白的表达并未被明显诱导。总体而言,我们的研究结果表明,在暴露于HS或4CP的第9天小鼠胚胎中,p53在致畸剂诱导的细胞周期停滞中可能起转录依赖性作用,而在致畸剂诱导的细胞凋亡中起转录依赖性作用。

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