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四氧化锇:超螺旋DNA中位点特异性扭曲的新型探针。

Osmium tetroxide: a new probe for site-specific distortions in supercoiled DNAs.

作者信息

Glikin G C, Vojtískova M, Rena-Descalzi L, Palecek E

出版信息

Nucleic Acids Res. 1984 Feb 10;12(3):1725-35. doi: 10.1093/nar/12.3.1725.

Abstract

Supercoiled plasmids Col E1 and cDm 506 (a Col E1 derivative carrying the D. melanogaster histone gene repeat) were treated with OsO4 in presence of pyridine and the reaction products were analyzed using different approaches. Gel electrophoresis showed that OsO4 binding to supercoiled DNA induced its relaxation without nicking. The amount of osmium bound to DNA (as determined electrochemically) increased with the extent of DNA relaxation. As a result of osmium modification of supercoiled cDm 506, a single denaturation "bubble" was observed in the electron microscope. Mapping of the osmium binding site by S1 nuclease cleavage followed by restriction enzyme digestion has revealed one major site in the intergenic spacer between the H1 and H3 histone genes of D. melanogaster. This site differs from the site cleaved by S1 nuclease in supercoiled DNA in the absence of osmium.

摘要

将超螺旋质粒Col E1和cDm 506(携带黑腹果蝇组蛋白基因重复序列的Col E1衍生物)在吡啶存在的情况下用四氧化锇处理,并使用不同方法分析反应产物。凝胶电泳显示,四氧化锇与超螺旋DNA结合会使其松弛而不产生切口。与DNA结合的锇的量(通过电化学测定)随着DNA松弛程度的增加而增加。对超螺旋cDm 506进行锇修饰后,在电子显微镜下观察到一个单一的变性“泡”。通过S1核酸酶切割后再用限制酶消化来绘制锇结合位点,结果显示在黑腹果蝇H1和H3组蛋白基因之间的基因间隔区有一个主要位点。该位点与在没有锇的情况下超螺旋DNA中被S1核酸酶切割的位点不同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cb8e/318611/ffd83cfda247/nar00321-0432-a.jpg

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