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大鼠在脑发育产前阶段优先表达的mRNA的cDNA克隆的分离。

Isolation of cDNA clones of the rat mRNAs expressed preferentially in the prenatal stages of brain development.

作者信息

Usui H, Ichikawa T, Miyazaki Y, Nagai S, Kumanishi T

机构信息

Department of Molecular Neuropathology, Niigata University, Japan.

出版信息

Brain Res Dev Brain Res. 1996 Dec 23;97(2):185-93. doi: 10.1016/s0165-3806(96)00152-6.

Abstract

For better understanding of the molecular mechanisms underlying the developmental processes of the mammalian brain, we isolated rat fetal brain-enriched (FBE) cDNA clones, whose corresponding mRNAs were expressed at least 5-fold more in the fetal brain than in the adult brain. Our modified differential screening procedure, which utilized a two-vector (pT7T3D and pBluescript) system and showed low background levels of colony hybridization for screening, efficiently identified 64 candidate FBE clones from a small number (475) of colonies in the fetal brain cDNA library. After subsequent second screening of the candidate FBE clones by Northern blot analysis, we successfully isolated 22 distinct FBE clones. The nucleotide sequence analysis of the 22 FBE clones revealed that 13 of them had no significant matches to the sequences reported in the databases, whereas 9 of them matched previously reported sequences (alpha-tubulin M alpha 1, beta-tubulin M beta 5, thymosin-beta 10, stathmin, beta-tubulin M beta 2, alpha-internexin, ferritin Lg chain, neuronatin and amphoterin), most of which have been shown to be down-regulated during brain development. We also found that the Northern blot analysis in the second screening could be replaced by cDNA library DNA-Southern blot analysis, in most clones corresponding to relatively abundantly expressed mRNAs. Thus, once the cDNA library is constructed, clone selection will be possible in such clones without the use of additional RNA or Northern blot in screening, allowing the analysis of small brain regions of interest.

摘要

为了更好地理解哺乳动物大脑发育过程的分子机制,我们分离了大鼠胎儿脑富集(FBE)cDNA克隆,其相应的mRNA在胎儿脑中的表达量至少是成人大脑中的5倍。我们改进的差异筛选程序利用双载体(pT7T3D和pBluescript)系统,在菌落杂交筛选时背景水平较低,从胎儿脑cDNA文库中的少量(475个)菌落中高效鉴定出64个候选FBE克隆。在随后通过Northern印迹分析对候选FBE克隆进行二次筛选后,我们成功分离出22个不同的FBE克隆。对这22个FBE克隆的核苷酸序列分析表明,其中13个与数据库中报道的序列无明显匹配,而另外9个与先前报道的序列匹配(α-微管蛋白Mα1、β-微管蛋白Mβ5、胸腺素β10、Stathmin、β-微管蛋白Mβ2、α-中间丝蛋白、铁蛋白轻链、神经钙蛋白和双调蛋白),其中大多数在大脑发育过程中已被证明表达下调。我们还发现,在第二次筛选中,对于大多数对应于相对高表达mRNA的克隆,Northern印迹分析可以被cDNA文库DNA-Southern印迹分析所取代。因此,一旦构建了cDNA文库,就可以在不使用额外RNA或Northern印迹进行筛选的情况下,对这些克隆进行克隆选择,从而能够分析感兴趣的小脑区域。

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