Gross K, Schaffner W, Telford J, Birnstiel M
Cell. 1976 Aug;8(4):479-84. doi: 10.1016/0092-8674(76)90215-4.
Fragments of histone DNA produced by restriction endonucleases contain 5' and 3' termini with defined topologies relative to the histone-coding sequences. After limited resection with lambda-exonuclease, the 6 kb Hindlll histone DNA fragment (see Schaffner et al., 1976) hybridizes to H4 histone mRNA whether or not the DNA has been denatured. This shown that the coding sequence for the histone H4 is proximal to the 3' terminus of the Hindlll restriction fragment. By contrast, lambda-exonuclease digestion of the 6 kb EcoRI histone DNA fragment drastically reduces hybridization of the H4 mRNA. Hence in this molecule, the H4 DNA sequence is near a 5' terminus of the EcoRI restriction fragment. From these results and those described in the preceding paper (Schaffner et al., 1976), the polarity of the H4 gene is therefore 5' H2B leads to H4 leads to H1 3'. Cloned Psammechinus histone DNA (S. G. Clarkson, H. Smith, W. Schaffner, K. Gross, and M. Birnstiel, manuscript submitted for publication) may be strand-separated by electrophoresis. Highly purified histone mRNAs (Gross et al., 1976) all hybridize almost exclusively to the strand of lesser electrophoretic mobility. It follows that all coding sequences are arranged in tandem within the same DNA strand, and that hence they share the same polarity as the H4 DNA sequences. Transcription therefore proceeds in the gene cluster in the direction H4 leads to H2B leads to H3 leads to H2A leads to H1.
限制性核酸内切酶产生的组蛋白DNA片段含有5'和3'末端,其相对于组蛋白编码序列具有确定的拓扑结构。用λ外切核酸酶进行有限切除后,6 kb HindIII组蛋白DNA片段(见Schaffner等人,1976年)无论DNA是否已变性,均与H4组蛋白mRNA杂交。这表明组蛋白H4的编码序列靠近HindIII限制性片段的3'末端。相比之下,6 kb EcoRI组蛋白DNA片段经λ外切核酸酶消化后,H4 mRNA的杂交显著减少。因此,在这个分子中,H4 DNA序列靠近EcoRI限制性片段的一个5'末端。根据这些结果以及前一篇论文(Schaffner等人,1976年)中描述的结果,H4基因的极性因此为5' H2B→H4→H1 3'。克隆的海胆组蛋白DNA(S.G.Clarkson、H.Smith、W.Schaffner、K.Gross和M.Birnstiel,已提交发表的手稿)可通过电泳进行链分离。高度纯化的组蛋白mRNA(Gross等人,1976年)几乎都只与电泳迁移率较低的链杂交。由此可见,所有编码序列在同一DNA链中串联排列,因此它们与H4 DNA序列具有相同的极性。因此,转录在基因簇中沿H4→H2B→H3→H2A→H1的方向进行。