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卵清蛋白基因。体外酶促合成与特性分析。

The ovalbumin gene. In vitro enzymatic synthesis and characterization.

作者信息

Monahan J J, McReynolds L A, O'Malley B W

出版信息

J Biol Chem. 1976 Dec 10;251(23):7355-62.

PMID:63459
Abstract

Using purified single-stranded ovalbumin complementary DNA (cDNAov) as a template for avian myeloblastosis (AM) virus reverse transcriptase, we have enzymatically synthesized a complete double-stranded cDNAov sequence. Our data suggests that many single-stranded cDNAov molecules contain short double-stranded sequences (hairpins) at their 3' termini capable of acting as primers for synthesis of complete double-stranded cDNAs. Optimum conditions for synthesis of the double-stranded cDNAov were found to be a high temperature (46 degrees) and a low salt concentration. Nevertheless, in all cases 40% of the initial single-stranded cDNAov molecules fail to prime for synthesis of a complementary double strand. Following synthesis, the second DNA strand is covalently linked to the first cDNAov strand as shown by analysis on alkaline sucrose gradients. The two strands have a high Tm on hydroxylapatite (89 degrees). These intact double-stranded cDNAov structures have a bouyant density in CsCl gradients of 1.700 g/cm3 and rapidly renature after heat denaturation with a C0t1/2 value of less than 2 X 10(-6) mol s liter(-1). All size classes of cDNAs, i.e. partial as well as complete transcripts of the mRNA, are capable of forming double-stranded structures. The closed loop of the double-stranded cDNAov could be opened with S1 nuclease. The denatured complementary strands of the cDNAov then renatured with the appropriate second order kinetics at a C0t1/2 value of 1.89 X 10(-3) mol s liter(-1). Using the enzyme terminal deoxyribonucleotidyltransferase to label to free 3'-terminal end of double-stranded [32P]cDNAov with 3H, we demonstrate a convenient procedure to study the site for restriction endonuclease cleavage within the ovalbumin gene.

摘要

以纯化的单链卵清蛋白互补DNA(cDNAov)为禽成髓细胞瘤(AM)病毒逆转录酶的模板,我们通过酶促合成了完整的双链cDNAov序列。我们的数据表明,许多单链cDNAov分子在其3'末端含有短双链序列(发夹结构),能够作为合成完整双链cDNA的引物。发现合成双链cDNAov的最佳条件是高温(46摄氏度)和低盐浓度。然而,在所有情况下,40%的初始单链cDNAov分子无法引发互补双链的合成。合成后,如在碱性蔗糖梯度上的分析所示,第二条DNA链与第一条cDNAov链共价连接。两条链在羟基磷灰石上具有高熔点(89摄氏度)。这些完整的双链cDNAov结构在CsCl梯度中的浮力密度为1.700 g/cm3,热变性后能快速复性,C0t1/2值小于2×10^(-6) mol·s·L^(-1)。所有大小类别的cDNA,即mRNA的部分转录本以及完整转录本,都能够形成双链结构。双链cDNAov的闭环可用S1核酸酶打开。cDNAov的变性互补链随后以适当的二级动力学复性,C0t1/2值为1.89×10^(-3) mol·s·L^(-1)。使用末端脱氧核糖核苷酸转移酶用3H标记双链[32P]cDNAov的游离3'-末端,我们展示了一种方便的方法来研究卵清蛋白基因内限制内切酶切割位点。

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