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Chromatographically Fractionated Complementary Strands of Bacillus subtilis Deoxyribonucleic Acid: Biological Properties

机译:枯草芽孢杆菌脱氧核糖核酸色谱分离的互补链:生物学特性

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摘要

Biological, physical, and chromatographic properties of methylated albuminkieselguhr (MAK)-fractionated complementary strands, designated as light (L) and heavy (H), of Bacillus subtilis deoxyribonucleic acid (DNA) are presented. The pattern of transforming activity along the MAK elution profile of alkilidenatured DNA shows that the residually active molecules selectively fractionated ahead of the L strand fraction, whereas the most active self-annealed molecules fractionated preferentially at the trailing end of the H strand fraction. The restoration rate of transforming activity in the late-eluting H molecules was rapid and independent of concentration during the annealing reaction. The data suggest that the self-annealing activity in the H strand is due in part to the formation of intrastrand secondary structures. Hydroxyapatite chromatography of self-annealed L and H strands yielded a major fraction (I) of highly purified strand preparations devoid of transforming activity and hypochromicity, and a minor “nativelike” fraction (II). Sedimentation velocity measurements show that, in addition to the mutual complementary nature of the L and H fractions, they differ in molecular size and possibly configuration.
机译:介绍了枯草芽孢杆菌脱氧核糖核酸(DNA)的甲基化白蛋白(GU)分离的互补链的生物学,物理和色谱特性,分别命名为轻链(L)和重链(H)。沿链状变性DNA的MAK洗脱图谱的转化活性模式显示,残留活性分子选择性地在L链部分之前进行了分馏,而活性最高的自退火分子则优先在H链部分的末端进行了分馏。后期洗脱的H分子中转化活性的恢复速率很快,并且与退火反应过程中的浓度无关。数据表明,H链中的自我退火活性部分归因于链内二级结构的形成。自退火的L和H链的羟基磷灰石色谱产生了​​主要部分(I),没有转化活性和低色性,而次要的是“天然样”部分(II)。沉降速度测量表明,除了L和H馏分的相互补充性质外,它们的分子大小和可能的构型也不同。

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