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绵羊中的血红蛋白转换。编码βB、βC和γ-珠蛋白mRNA的DNA序列的合成、克隆及特性分析。

Hemoglobin switching in sheep. Synthesis, cloning, and characterization of DNA sequences coding for the beta B, beta C, and gamma-globin mRNAs.

作者信息

Benz E J, Kretschmer P J, Geist C E, Kantor J A, Turner P H, Nienhuis A W

出版信息

J Biol Chem. 1979 Aug 10;254(15):6880-8.

PMID:378994
Abstract

Synthetic double-stranded DNAs (sDNAs) were prepared from sheep globin mRNA templates isolated from reticulocytes producing either hemoglobin B (HbB) (alpha 2 beta B2), HbC (alpha 2 beta C2), or HbF (alpha 2 gamma 2). These DNAs were inserted into the Eco RI site of plasmid pMB9 by the homopolymer tailing method and used to transform Escherichia coli X1776 to tetracycline resistance. Recombinant clones were identified by colony hybridization and further characterized by molecular hybridization and restriction endonuclease analysis. All plasmids analyzed thus far contained either beta- or gamma-globin DNA sequences. Moreover, sDNAs used for cloning yielded restriction endonuclease fragments consistent with the presence of predominantly beta- or gamma-sDNA, indicating that formation of double-stranded alpha-sDNA proceeds much less efficiently under our conditions than the formation of non-alpha-sDNAs. Three recombinant plasmids, pS beta B2, pS beta C69, and pS gamma 56, were selected for detailed study. These were shown to contain, respectively, beta B-, beta C-, and gamma-DNA sequences by molecular hybridization and by protection of the appropriate cDNAs from S1 nuclease digestion. Each contained all of the restriction endonuclease sites defined for the synthetic sDNAs and protected at least 90% of the sequence length of homologous cDNA. Restriction endonuclease maps of the beta B- and beta C-globin genes were identical at all 12 sites that were mapped, whereas four differences were identified in the gamma gene compared to the two others; three of these corresponded to differences in amino acid sequence of the globins. A method was developed to isolate the anti-mRNA strand of the insert for use as a specific molecular hybridization probe analogous to complementary DNA.

摘要

合成双链DNA(sDNA)是由从产生血红蛋白B(HbB)(α2βB2)、HbC(α2βC2)或HbF(α2γ2)的网织红细胞中分离出的绵羊珠蛋白mRNA模板制备而成。这些DNA通过同聚物加尾法插入质粒pMB9的Eco RI位点,并用于将大肠杆菌X1776转化为对四环素具有抗性。通过菌落杂交鉴定重组克隆,并通过分子杂交和限制性内切酶分析进一步表征。到目前为止分析的所有质粒都含有β-或γ-珠蛋白DNA序列。此外,用于克隆的sDNA产生的限制性内切酶片段与主要存在β-或γ-sDNA一致,这表明在我们的条件下双链α-sDNA的形成效率远低于非α-sDNA的形成。选择了三个重组质粒pSβB2、pSβC69和pSγ56进行详细研究。通过分子杂交以及保护适当的cDNA免受S1核酸酶消化,表明它们分别含有βB-、βC-和γ-DNA序列。每个质粒都包含为合成sDNA定义的所有限制性内切酶位点,并保护了同源cDNA至少90%的序列长度。βB-和βC-珠蛋白基因的限制性内切酶图谱在所有12个定位位点上是相同的,而与另外两个基因相比,γ基因中有四个差异;其中三个差异对应于珠蛋白氨基酸序列的差异。开发了一种方法来分离插入片段的反义mRNA链,用作类似于互补DNA的特异性分子杂交探针。

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