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High resolution mapping DNAs by R-loop atomic force microscopy.

机译:通过R环原子力显微镜高分辨率绘制DNA。

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R-loops formed by short RNA transcripts have been imaged by atomic force microscopy (AFM) at a constant force in the height mode. The technique was applied to mapping the human endogenous retrovirus K10 family (HERV-K10) long terminal repeats (LTR) within individual plasmids and cosmids. RNA probes specific for the U3 (384 nt) and U5 (375 nt) LTR regions separated by a span of 200 bp were used for R-loop formation with LTRs located within plasmid (3.8 kb) or cosmid ( approximately 40 kb) DNAs. R-loops stabilized by glyoxal treatment and adsorbed onto the mica surface in the presence of magnesium ions looked like looped out segments of RNA:DNA hybrids. The total yield of R-loops was usually approximately 95%. The RNA:DNA hybrids were found to be 12-15% shorter than the corresponding DNA:DNA duplex. The two regions of the LTR could be easily discerned in the AFM images as clearly separated loops. R-loop positions determined on cosmids by AFM were accurate to approximately 0.5% of the cosmid length. This technique might be easily adapted for mapping various sequences such as gene exons or regulatory regions and for detecting insertions, deletions and rearrangements that cause human genetic diseases.
机译:由短RNA转录物形成的R环已通过原子力显微镜(AFM)在高度模式下以恒定力成像。该技术已应用于在单个质粒和粘粒中绘制人类内源性逆转录病毒K10家族(HERV-K10)长末端重复序列(LTR)。对间隔200 bp的U3(384 nt)和U5(375 nt)LTR区特异的RNA探针用于R环形成,其中LTR位于质粒(3.8 kb)或粘粒(约40 kb)DNA中。通过乙二醛处理稳定的R环,并在存在镁离子的情况下吸附到云母表面,看起来就像环状的RNA:DNA杂物片段。 R环的总收率通常约为95%。发现RNA:DNA杂种比相应的DNA:DNA双链体短12-15%。 LTR的两个区域可以很容易地在AFM图像中辨别为清晰分开的回路。通过AFM在粘粒上确定的R环位置精确到粘粒长度的约0.5%。此技术可能很容易适用于定位各种序列(例如基因外显子或调控区),以及检测导致人类遗传疾病的插入,缺失和重排。

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