首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Flipping of cloned d(pCpG)n.d(pCpG)n DNA sequences from right- to left-handed helical structure by salt Co(III) or negative supercoiling.
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Flipping of cloned d(pCpG)n.d(pCpG)n DNA sequences from right- to left-handed helical structure by salt Co(III) or negative supercoiling.

机译:用盐Co(III)或负超螺旋将克隆的d(pCpG)n.d(pCpG)n DNA序列从右旋螺旋结构翻转到左旋螺旋结构。

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摘要

Negative supercoiling of plasmid DNAs containing 24--42 base pairs of alternating d(pCpG) inserts is shown to cause the flipping of the helical hand of the inserts from right to left under physiological conditions. For a negatively supercoiled DNA with a fixed linking number, this flipping reduces its superhelicity and, therefore, is accompanied by a shift of its electrophoretic mobility in agarose gel. Quantitation of the mobility shifts indicates that essentially the whole stretch of contiguous alternating d(pCpG) flips to the left-handed helical form when the negative superhelical density (specific linking difference) is greatest than or equal to 0.03.
机译:含有交替交替的d(pCpG)插入物的24--42个碱基对的质粒DNA的负超螺旋显示在生理条件下会导致插入物的螺旋形手从右向左翻转。对于具有固定连接数的负超螺旋DNA,这种翻转降低了其超螺旋性,因此伴随着其在琼脂糖凝胶中电泳迁移率的变化。迁移率变化的定量表明,当负超螺旋密度(比连接差)大于或等于0.03时,基本上整个连续交替d(pCpG)都转变为左旋螺旋形式。

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