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The solution structure of the four-way DNA junction at low-salt conditions: a fluorescence resonance energy transfer analysis.

机译:低盐条件下四向DNA连接的溶液结构:荧光共振能量转移分析。

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摘要

The four-way DNA (Holliday) junction is an important postulated intermediate in the process of genetic recombination. Earlier studies have suggested that the junction exists in two alternative conformations, depending upon the salt concentration present. At high salt concentrations the junction folds into a stacked X structure, while at low salt concentrations the data indicate an extended unstacked conformation. The stereochemical conformation of the four-way DNA junction at low salt (low alkali ion concentration and no alkaline earth ions) was established by comparing the efficiency of fluorescence resonance energy transfer (FRET) between donor and acceptor molecules attached pairwise in three permutations to the 5' termini of the duplex arms. A new variation of FRET was implemented based upon a systematic variation of the fraction of donor labeled single strands. The FRET results indicate that the structure of the four-way DNA junction at low salt exists as an unstacked, extended, square arrangement of the four duplex arms. The donor titration measurements made in the presence of magnesium ions clearly show the folding of the junction into the X stacked structure. In addition, the FRET efficiency can be measured. The fluorescence anisotropy of the acceptor in the presence of Mg2+ during donor titrations was also measured; the FRET efficiency can be calculated from the anisotropy data and the results are consistent with the folded, stacked X structure.
机译:四向DNA(Holliday)连接是基因重组过程中重要的假定中间体。较早的研究表明,取决于存在的盐浓度,连接点存在两种不同的构象。在高盐浓度下,连接处折叠成堆叠的X结构,而在低盐浓度下,数据表明扩展了未堆叠构象。通过比较在三个排列上成对排列的供体和受体分子之间成对连接的供体和受体分子之间的荧光共振能量转移(FRET)的效率,可以确定低盐(低碱金属离子浓度且没有碱土金属离子)时四向DNA连接的立体化学构象。双臂的5'末端。基于供体标记的单链分数的系统变化,实现了FRET的新变化。 FRET结果表明,低盐下四向DNA连接的结构以四个双链臂的未堆叠,延伸的方形排列形式存在。在镁离子存在下进行的供体滴定测量清楚地表明,该结折叠成X堆叠结构。另外,可以测量FRET效率。还测量了供体滴定过程中在Mg2 +存在下受体的荧光各向异性。从各向异性数据可以计算出FRET效率,其结果与折叠的堆叠X结构一致。

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