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用于体细胞操作的基因靶向:通过Alu-PCR指纹图谱和染色体涂染快速分析染色体减少的杂种细胞

Gene targeting for somatic cell manipulation: rapid analysis of reduced chromosome hybrids by Alu-PCR fingerprinting and chromosome painting.

作者信息

Dorin J R, Emslie E, Hanratty D, Farrall M, Gosden J, Porteous D J

机构信息

Human Genetics Unit, Western General Hospital, Edinburgh, UK.

出版信息

Hum Mol Genet. 1992 Apr;1(1):53-9. doi: 10.1093/hmg/1.1.53.

Abstract

The techniques of reverse genetics rely heavily on parasexual methods for manipulating the human genome. However, the application of somatic cell genetics is severely limited by the availability of suitable endogenous selectable markers in the genome. We have addressed this problem by targeting a universally selectable marker into a predetermined region of the genome, using a stringent selection for homologous recombination. Correct gene targeting to human chromosome 7q11 was screened for by Southern blotting and confirmed by fluorescent in situ hybridization. Reduced chromosome 7 hybrids were generated by chromosome mediated gene transfer and selection for the neo gene. The resultant transgenomes were characterized by a combination of L1 fingerprinting, locus specific marker analysis, Alu-PCR and chromosome 'painting'. Alu-PCR and L1 'fingerprints' are complementary and mutually consistent. Chromosome 'painting' reflects and extends the results obtained for specific marker co-transfer. Thus Alu-PCR 'fingerprinting' and 'painting' combine to rapidly provide an accurate picture of transgenome content and complexity. Gene targeting, chromosome tagging and subsequent isolation can be applied to any region of the genome for which a molecular probe is available.

摘要

反向遗传学技术在很大程度上依赖于用于操纵人类基因组的准性生殖方法。然而,体细胞遗传学的应用受到基因组中合适的内源性选择标记可用性的严重限制。我们通过使用严格的同源重组筛选,将一个通用选择标记靶向基因组的预定区域,解决了这个问题。通过Southern印迹法筛选正确靶向人类7号染色体q11的基因,并通过荧光原位杂交进行确认。通过染色体介导的基因转移和对neo基因的选择产生了7号染色体减少的杂种。通过L1指纹分析、位点特异性标记分析、Alu-PCR和染色体“描绘”相结合的方法对所得的转基因基因组进行了表征。Alu-PCR和L1“指纹”相互补充且一致。染色体“描绘”反映并扩展了特定标记共转移所获得的结果。因此,Alu-PCR“指纹分析”和“描绘”相结合,能够快速提供转基因基因组内容和复杂性的准确图景。基因靶向、染色体标记及后续分离可应用于有分子探针可用的基因组的任何区域。

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