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THE ELASTICITY OF A SINGLE SUPERCOILED DNA MOLECULE

机译:单超DNA分子的弹性

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Single linear DNA molecules were bound at multiple sites at one extremity to a treated glass cover slip and at the other to a magnetic bead. The DNA was therefore torsionally constrained, A magnetic field was used to rotate the beads and thus to coil and pull the DNA. The stretching force was determined by analysis of the Brownian fluctuations of the bead. Here, the elastic behavior of individual lambda DNA molecules over- and underwound by up to 500 turns was studied, A sharp transition was discovered from a low to a high extension state at a force of similar to 0.45 piconewtons for underwound molecules and at a force of similar to 3 piconewtons for overwound ones. These transitions, probably reflecting the formation of alternative structures in stretched coiled DNA molecules, might be relevant for DNA transcription and replication.
机译:单个线性DNA分子在一个末端的多个位置绑定到处理过的玻璃盖玻片,而在另一个末端绑定到磁珠。因此,DNA受到扭转约束。使用磁场旋转磁珠,从而缠绕和拉动DNA。通过分析珠子的布朗起伏来确定拉伸力。在这里,研究了单个lambda DNA分子上绕和绕过多达500圈的弹性行为,发现了从低延伸状态到高延伸状态的急剧转变,其作用力类似于未绕过分子的0.45皮摩尔,超过3个piconewtons的伤口。这些转变可能反映了拉伸的卷曲DNA分子中替代结构的形成,可能与DNA转录和复制有关。

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