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首页> 外文期刊>International journal of developmental neuroscience: the official journal of the International Society for Developmental Neuroscience >Lead-induced developmental perturbations in hippocampal Sp1 DNA-binding are prevented by zinc supplementation: in vivo evidence for Pb and Zn competition.
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Lead-induced developmental perturbations in hippocampal Sp1 DNA-binding are prevented by zinc supplementation: in vivo evidence for Pb and Zn competition.

机译:补锌可预防铅诱导的海马Sp1 DNA结合中的发育扰动:体内铅和锌竞争的证据。

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Zinc finger protein (ZFP) transcription factors are essential for regulation of gene expression in the developing brain. We previously reported that Pb exposure perturbed the DNA-binding of ZFP such as Sp1 and Egr-1 in the cerebellum, which play critical role in CNS development. In this study, we focused on hippocampal Sp1 DNA-binding and mRNA expression in neonatal Pb-exposed animals. The expression pattern of an Sp1 target (NMDAR1) gene was also monitored. To study in vivo and in vitro competition between Pb and Zn, we supplemented animals with Zn, and examined the effects of both metals on hippocampal Sp1 DNA-binding and the DNA-binding of a recombinant Sp1 protein (rhSp1). Tissue metal analysis revealed that only the disposition of Pb in the brain but not its distribution in the blood was influenced by the presence of Zn. The developmental profile of Sp1 DNA-binding exhibited a peak on PND 15 which subsequently declined to adult levels. Consistent with earlier studies, Pb exposure produced premature peaks of Sp1 DNA-binding on PND 5 which later returned to adult levels. The basal and Pb-induced developmental patterns of Sp1 mRNA departed from its DNA-binding profiles. However, the expression patterns of the NMDAR1 gene were relative to Sp1 DNA-binding. Supplementation with zinc provided a protective effect on Pb-induced changes in Sp1 DNA-binding. Moreover, Pb and Zn directly interfered with the DNA-binding of rhSp1 in vitro. These data suggest that Pb and Zn can compete both in vivo and in vitro at the zinc finger domain of Sp1 with a consequential effect on Sp1 DNA-binding, subsequent gene expression and brain development.
机译:锌指蛋白(ZFP)转录因子对于调节发育中的大脑中的基因表达至关重要。我们之前曾报道过,铅暴露扰乱了小脑中ZFP(例如Sp1和Egr-1)的DNA结合,而小脑中CNS的发展起着至关重要的作用。在这项研究中,我们集中于新生的Pb暴露的动物海马Sp1 DNA结合和mRNA表达。还监测了Sp1靶标(NMDAR1)基因的表达模式。为了研究铅和锌之间的体内和体外竞争,我们给动物补充了锌,并研究了两种金属对海马Sp1 DNA结合和重组Sp1蛋白(rhSp1)的DNA结合的影响。组织金属分析显示,锌中仅影响脑中Pb的分布,而不影响其在血液中的分布。 Sp1 DNA结合的发育概况在PND 15上显示一个峰值,随后下降到成人水平。与早期研究一致,Pb暴露在PND 5上产生Sp1 DNA结合的过早峰,此后又回到成人水平。 Sp1 mRNA的基础和铅诱导的发育模式偏离其DNA绑定配置文件。但是,NMDAR1基因的表达方式与Sp1 DNA结合有关。锌补充对Pb诱导的Sp1 DNA结合变化具有保护作用。而且,Pb和Zn在体外直接干扰rhSp1的DNA结合。这些数据表明,Pb和Zn可以在Sp1的锌指结构域中进​​行体内和体外竞争,从而对Sp1的DNA结合,后续的基因表达和大脑发育产生影响。

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