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四氧化锇对负超螺旋DNA中B段和Z段交界处结构畸变的识别。

Recognition of the structural distortions at the junctions between B and Z segments in negatively supercoiled DNA by osmium tetroxide.

作者信息

Nejedlý K, Kwinkowski M, Gałazka G, Kłysik J, Palecek E

机构信息

Institute of Biophysics, Czechoslovak Academy of Sciences, Brno.

出版信息

J Biomol Struct Dyn. 1985 Dec;3(3):467-78. doi: 10.1080/07391102.1985.10508435.

Abstract

It has been shown for the first time that conformational junction between contiguous right-handed B and left-handed Z segments can be recognized by a chemical probe. Plasmid pRW751 containing (dC-dG)13 and (dC-dG)16 blocks was treated with osmium tetroxide, pyridine (a reagent known to be single-strand selective) at physiological ionic conditions (0.1 and 0.2 M NaCl) and neutral pH. Mapping of the osmium binding sites by restriction enzyme digestion followed by nuclease S1 cleavage has revealed selective binding of osmium at, or near to, the end of the (dC-dG)n segments proximal to the 95 bp lac sequence. The junction of the shorter (dC-dG)13 segment was modified to a substantially greater extent than that of the longer segment. Partial inhibition of DNA cleavage by BamHI was observed at the restriction sites neighbouring to the both (dC-dG)n segments as a result of DNA modification by osmium tetroxide. The site-selective modification occurred only in supercoiled and not in relaxed molecules. Differences in the sensitivity of the B/Z junctions in pRW751 to the osmium tetroxide were explained by different structural features of these junctions.

摘要

首次表明,连续的右手B段和左手Z段之间的构象连接可以被化学探针识别。含有(dC-dG)13和(dC-dG)16片段的质粒pRW751在生理离子条件(0.1和0.2 M NaCl)和中性pH下,用四氧化锇、吡啶(一种已知的单链选择性试剂)处理。通过限制性内切酶消化,随后用核酸酶S1切割来绘制锇结合位点,结果显示锇在靠近95 bp lac序列的(dC-dG)n片段末端或其附近有选择性结合。较短的(dC-dG)13片段的连接点比长片段的连接点修饰程度大得多。由于四氧化锇对DNA的修饰,在与两个(dC-dG)n片段相邻的限制性位点处观察到BamHI对DNA切割的部分抑制。位点选择性修饰仅发生在超螺旋分子中,而不是松弛分子中。pRW751中B/Z连接点对四氧化锇敏感性的差异是由这些连接点的不同结构特征所解释的。

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