乙醇暴露改变胎儿酒精谱系障碍小鼠模型中的蛋白质表达。

International journal of proteomics Pub Date : 2012-01-01 Epub Date: 2012-06-14 DOI:10.1155/2012/867141
Stephen Mason, Bruce Anthony, Xianyin Lai, Heather N Ringham, Mu Wang, Frank A Witzmann, Jin-Sam You, Feng C Zhou
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引用次数: 19

摘要

发育过程中的酒精暴露可导致可变的生长迟缓和面部畸形,即胎儿酒精谱系障碍。尽管这种疾病的机制尚不完全清楚,但最近的研究进展表明,酒精会引起基因表达和胚胎表观基因组的异常变化。为了了解酒精致畸形的基因和表观遗传变化,我们采用全胚胎培养方法鉴定了C6小鼠的酒精特征蛋白谱。酒精处理和对照培养均质,等电聚焦,并加载二维凝胶电泳。染色凝胶与分析软件交叉匹配。共鉴定出40个差异表达蛋白点(P < 0.01),其中9个点用于LC/MS-MS鉴定。失调蛋白包括血清转铁蛋白、三磷酸异构酶和泛素偶联酶E2 N。免疫分析证实血清转铁蛋白和三磷酸酯异构酶的失调。酒精可诱导与细胞功能、细胞周期和泛素-蛋白酶体通路相关的蛋白发生改变。一些失调的蛋白与NF-κB和Myc转录因子级联的效应物相互作用。使用全胚胎培养,我们已经确定了已知参与神经系统发育和功能的失调蛋白。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Ethanol exposure alters protein expression in a mouse model of fetal alcohol spectrum disorders.

Alcohol exposure during development can result in variable growth retardation and facial dysmorphology known as fetal alcohol spectrum disorders. Although the mechanisms underlying the disorder are not fully understood, recent progress has been made that alcohol induces aberrant changes in gene expression and in the epigenome of embryos. To inform the gene and epigenetic changes in alcohol-induced teratology, we used whole-embryo culture to identify the alcohol-signature protein profile of neurulating C6 mice. Alcohol-treated and control cultures were homogenized, isoelectrically focused, and loaded for 2D gel electrophoresis. Stained gels were cross matched with analytical software. We identified 40 differentially expressed protein spots (P < 0.01), and 9 spots were selected for LC/MS-MS identification. Misregulated proteins include serotransferrin, triosephosphate isomerase and ubiquitin-conjugating enzyme E2 N. Misregulation of serotransferrin and triosephosphate isomerase was confirmed with immunologic analysis. Alteration of proteins with roles in cellular function, cell cycle, and the ubiquitin-proteasome pathway was induced by alcohol. Several misregulated proteins interact with effectors of the NF-κB and Myc transcription factor cascades. Using a whole-embryo culture, we have identified misregulated proteins known to be involved in nervous system development and function.

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