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Isolation of Human Transcripts Expressed in Hamster Cells from YACs by cDNA Representational Difference Analysis

机译:cDNA代表性差异分析法从YACs中分离出仓鼠细胞中表达的人类转录物

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摘要

Gene isolation methods used during positional cloning rely on physical contigs consisting of bacterial artificial chromosomes, P1, or cosmid clones. However, in most instances, the initial framework for physical mapping consists of contigs of yeast artificial chromosome (YACs), large vectors that are suboptimal substrates for gene isolation. Here we report a strategy to identify gene sequences contained within a YAC by using cDNA representational difference analysis (RDA) to directly isolate transcripts expressed from the YAC in mammalian cells. The RDA tester cDNAs were generated from a previously reported hamster cell line derived by stable transfer of a 590-kb YAC (911D5) that expressed NPC1, the human gene responsible for Niemann-Pick type C (NP-C). The driver cDNAs were generated from a control hamster cell line that did not contain the YAC that expressed NPC1. Among the gene fragments obtained by RDA, NPC1 was the most abundant product. In addition, two non-NPC1 fragments were isolated that were mapped to and expressed from 911D5. One of these RDA gene fragments (7-R) spans more than one exon and has 98% sequence identity with a human cDNA clone reported previously as an expressed sequence tag (EST), but not mapped to a chromosomal region. The other fragment (2-R) that had no significant sequence similarities with known mammalian genes or ESTs, was further localized to the region of overlap between YACs 911D5 and 844E3. The latter YAC is part of a contig across the NP-C candidate region, but does not contain NPC1. This two-part approach in which stable YAC transfer is followed by cDNA RDA should be a useful adjunct strategy to expedite the cloning of human genes when a YAC contig is available across a candidate interval.[The sequence data described in this paper have been submitted to GenBank under accession nos. and .]
机译:位置克隆期间使用的基因分离方法依赖于由细菌人工染色体,P1或粘粒克隆组成的物理重叠群。但是,在大多数情况下,物理作图的初始框架由酵母人工染色体(YAC)重叠群组成,它们是基因分离的次佳底物的大型载体。在这里,我们报告了一种策略,可通过使用cDNA代表性差异分析(RDA)直接分离哺乳动物细胞中从YAC表达的转录本来鉴定YAC中包含的基因序列。 RDA测试基因cDNA是由先前报道的仓鼠细胞系生成的,该细胞系通过稳定表达NPC1的590-kb YAC(911D5)传递,NPC1是负责尼曼-皮克C型(NP-C)的人类基因。从不包含表达NPC1的YAC的对照仓鼠细胞系中生成驱动程序cDNA。在通过RDA获得的基因片段中,NPC1是最丰富的产物。此外,还分离了两个非NPC1片段,这些片段被映射到911D5并从911D5表达。这些RDA基因片段之一(7-R)跨越一个以上的外显子,与先前报道为表达序列标签(EST)的人cDNA克隆具有98%的序列同一性,但未定位到染色体区域。与已知的哺乳动物基因或EST没有明显序列相似性的另一个片段(2-R)进一步位于YAC 911D5和844E3之间的重叠区域。后一个YAC是NP-C候选区域中重叠群的一部分,但不包含NPC1。当在候选间隔中可获得YAC重叠群时,这种由两部分组成的方法,其中稳定的YAC转移后是cDNA RDA,应该是一种有用的辅助策略,以加快人基因的克隆。[本文描述的序列数据已提交入世号为GenBank。和。]

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