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酵母染色体DNA中的天然交联

Naturally occurring cross-links in yeast chromosomal DNA.

作者信息

Forte M A, Fangman W L

出版信息

Cell. 1976 Jul;8(3):425-31. doi: 10.1016/0092-8674(76)90155-0.

Abstract

Chromosome-size yeast DNA molecules with a number average molecular weight (Mn) of 3-4 X 10(8) were isolated from sucrose gradients after sedimentation of lysed yeast spheroplasts. Resedimentation showed that the molecules were isolated without introducing appreciable single-strand or double-strand breaks. The presence of cross-links in these molecules was suggested by the observation that the apparent Mn in alkali was greater than expected for separated single strands. Since cross-linked molecules would have strands which fail to separate upon denaturation, this was tested more directly. Neutralization of alkaline denaturing conditions resulted in up to 70% of the intact molecules rapidly reforming duplex structures, as shown by equilibrium banding in CsCI. Experiments with larger E. coli DNA molecules (Mn = 5.2 X 10(8)) indicated that the conditions used were sufficient to denature completely molecules of this size. Results of enzyme treatments suggest that the cross-links are not RNA or protein. Experiments with density-labeled yeast DNA molecules showed that the rapid reformation of duplex DNA is not the consequence either of a bimolecular reaction between separated DNA strands or of intrastrand renaturation. The data indicate that when the yeast DNA molecules are completely denatured, the strands fail to separate. Hence they must be cross-linked. Experiments with sheared DNA show that there are small number of cross-links, one to four, permolecule.

摘要

在裂解的酵母原生质体沉降后,从蔗糖梯度中分离出数均分子量(Mn)为3 - 4×10⁸的染色体大小的酵母DNA分子。再沉降表明,分离这些分子时没有引入明显的单链或双链断裂。这些分子中存在交联的迹象是,在碱性条件下的表观Mn大于单链分离时预期的值。由于交联分子的链在变性时不会分离,对此进行了更直接的测试。碱性变性条件的中和导致高达70%的完整分子迅速重新形成双链结构,如氯化铯平衡区带所示。对更大的大肠杆菌DNA分子(Mn = 5.2×10⁸)进行的实验表明,所用条件足以使这种大小的分子完全变性。酶处理结果表明交联不是由RNA或蛋白质引起的。用密度标记的酵母DNA分子进行的实验表明,双链DNA的快速重新形成既不是分离的DNA链之间双分子反应的结果,也不是链内复性的结果。数据表明,当酵母DNA分子完全变性时,链不会分离。因此它们一定是交联的。对剪切DNA的实验表明,每个分子有少量的交联,一到四个。

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