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直接筛选:一种分离由大基因组区域编码的cDNA的方法。

Direct selection: a method for the isolation of cDNAs encoded by large genomic regions.

作者信息

Lovett M, Kere J, Hinton L M

机构信息

Department of Molecular Genetics, Genelabs Inc., Redwood City, CA 94063.

出版信息

Proc Natl Acad Sci U S A. 1991 Nov 1;88(21):9628-32. doi: 10.1073/pnas.88.21.9628.

Abstract

We have developed a strategy for the rapid enrichment and identification of cDNAs encoded by large genomic regions. The basis of this "direct selection" scheme is the hybridization of an entire library of cDNAs to an immobilized genomic clone. Nonspecific hybrids are eliminated and selected cDNAs are eluted. These molecules are then amplified and are either cloned or subjected to further selection/amplification cycles. This scheme was tested using a 550-kilobase yeast artificial chromosome clone that contains the EPO gene. Using this clone and a fetal kidney cDNA library, we have achieved a 1000-fold enrichment of EPO cDNAs in one cycle of enrichment. More significantly, we have further investigated one of the "anonymous" cDNAs that was selectively enriched. We confirmed that this cDNA was encoded by the yeast artificial chromosome. Its frequency in the starting library was 1 in 1 x 10(5) cDNAs and after selection comprised 2% of the selected library. DNA sequence analysis of this cDNA and of the yeast artificial chromosome clone revealed that this gene encodes the beta 2 subunit of the human guanine nucleotide-binding regulatory proteins. Restriction mapping and hybridization data position this gene (GNB2) to within 30-70 kilobases of the EPO gene. The selective isolation and mapping of GNB2 confirms the feasibility of this direct selection strategy and suggests that it will be useful for the rapid isolation of cDNAs, including disease-related genes, across extensive portions of the human genome.

摘要

我们已经开发出一种用于快速富集和鉴定由大基因组区域编码的cDNA的策略。这种“直接筛选”方案的基础是将整个cDNA文库与固定化的基因组克隆进行杂交。非特异性杂交体被去除,筛选出的cDNA被洗脱。然后将这些分子进行扩增,要么进行克隆,要么进行进一步的筛选/扩增循环。使用包含EPO基因的550千碱基酵母人工染色体克隆对该方案进行了测试。利用这个克隆和一个胎儿肾脏cDNA文库,我们在一个富集循环中实现了EPO cDNA 1000倍的富集。更重要的是,我们进一步研究了一个被选择性富集的“未知”cDNA。我们证实这个cDNA是由酵母人工染色体编码的。它在起始文库中的频率是1/1×10⁵个cDNA,经过筛选后在筛选文库中占2%。对这个cDNA和酵母人工染色体克隆进行DNA序列分析表明,这个基因编码人鸟嘌呤核苷酸结合调节蛋白的β2亚基。限制性图谱分析和杂交数据将这个基因(GNB2)定位在EPO基因30 - 70千碱基范围内。GNB2的选择性分离和定位证实了这种直接筛选策略的可行性,并表明它将有助于在人类基因组的广泛区域快速分离cDNA,包括与疾病相关的基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d019/52771/ccf50880dc96/pnas01071-0264-a.jpg

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