Jeffreys A J, Flavell R A
Cell. 1977 Oct;12(2):429-39. doi: 10.1016/0092-8674(77)90119-2.
Rabbit liver DNA was cleaved with the restriction endonucleases Eco RI, Pst I or Kpn I. Resulting DNA fragments were denatured, separated by electrophoresis in agarose gels and subsequently transferred by blotting onto nitrocellulose filters. Filters were then hybridized with a plasmid containing a DNA copy of rabbit beta-globin messenger RNA (plasmid PbetaG1; Maniatis et al., 1976) which had been labeled by nick translation to a high specific activity with 32P. A very limited number of discrete rabbit DNA fragments was found which could form well matched hybrids with PbetaG1 DNA. Endonuclease Eco RI, which cleaves the rabbit beta-globin gene, produced two beta-globin DNA fragments, whereas endonucleases Pst I and Kpn I, which do not cut the gene, each generated only one fragment. Using double digests, these fragments could be ordered into a physical map of restriction endonuclease cleavage sites around the beta-globin gene on the rabbit genome. This map is consistent with the presence of a single copy of the beta-globin gene per haploid genome. The direction of transcription of the beta-globin gene within the physical map was determined.
用限制性内切酶Eco RI、Pst I或Kpn I切割兔肝DNA。将得到的DNA片段变性,通过琼脂糖凝胶电泳分离,随后通过印迹转移到硝酸纤维素滤膜上。然后将滤膜与一个含有兔β-珠蛋白信使RNA的DNA拷贝的质粒(质粒PbetaG1;Maniatis等人,1976)杂交,该质粒已通过切口平移用32P标记至高比活性。发现极少量离散的兔DNA片段能与PbetaG1 DNA形成匹配良好的杂交体。切割兔β-珠蛋白基因的内切酶Eco RI产生了两个β-珠蛋白DNA片段,而不切割该基因的内切酶Pst I和Kpn I各自仅产生一个片段。使用双酶切,可以将这些片段排列成兔基因组中β-珠蛋白基因周围限制性内切酶切割位点的物理图谱。该图谱与每个单倍体基因组中存在单个β-珠蛋白基因拷贝一致。确定了物理图谱中β-珠蛋白基因的转录方向。