首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Positive DNA supercoiling generates a chromatin conformation characteristic of highly active genes.
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Positive DNA supercoiling generates a chromatin conformation characteristic of highly active genes.

机译:阳性DNA超螺旋产生高活性基因的染色质构象特征。

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摘要

During transcription, positive DNA supercoils generated ahead of RNA polymerase could theoretically uncoil the negative DNA supercoils associated with nucleosomes and thereby decondense the chromatin fiber in preparation for RNA polymerase passage. Here we examine the effect of positive DNA supercoiling on the structure of yeast 2-microns minichromosomes. We utilized a conditional topoisomerase mutant expressing Escherichia coli topoisomerase I to convert the DNA supercoiling state from negative to positive in vivo. Minichromosomes containing positively supercoiled DNA exhibited a striking increase in DNase I sensitivity. They also displayed additional micrococcal nuclease cleavage sites but yielded nearly typical nucleosomal ladders after extensive digestion. Upon in vitro relaxation with eukaryotic topoisomerase I, the minichromosomes remained DNase I sensitive but were converted to negative DNA supercoiling with a slightly increased linking number compared to typical minichromosomes, thus indicating the presence of bound histones. Therefore, positive DNA supercoiling provides a mechanism for generating, but is not required for maintaining, a conformation in chromatin characteristic of highly transcribed genes.
机译:在转录过程中,理论上在RNA聚合酶之前产生的阳性DNA超螺旋可以解开与核小体相关的阴性DNA超级螺旋,从而使染色质纤维缩聚,为RNA聚合酶的通过做准备。在这里,我们检查了阳性DNA超螺旋对酵母2微米微染色体结构的影响。我们利用表达大肠杆菌拓扑异构酶I的条件拓扑异构酶突变体在体内将DNA超螺旋状态从阴性转化为阳性。包含阳性超螺旋DNA的微染色体显示出DNase I敏感性的显着增加。他们还展示了额外的微球菌核酸酶切割位点,但经过大量消化后产生了近乎典型的核小体阶梯。在用真核生物拓扑异构酶I进行体外松弛后,微染色体仍然对DNase I敏感,但与典型的微染色体相比,其微弱的连接数被转化为负DNA超螺旋,因此表明存在结合的组蛋白。因此,阳性DNA超螺旋提供了一种机制,但不是维持高度转录基因的染色质特征构象的必要条件。

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