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Macromolecular crowding induced elongation and compaction of single DNA molecules confined in a nanochannel

机译:大分子拥挤诱导限制在纳米通道中的单个DNA分子的伸长和紧缩

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摘要

The effect of dextran nanoparticles on the conformation and compaction of single DNA molecules confined in a nanochannel was investigated with fluorescence microscopy. It was observed that the DNA molecules elongate and eventually condense into a compact form with increasing volume fraction of the crowding agent. Under crowded conditions, the channel diameter is effectively reduced, which is interpreted in terms of depletion in DNA segment density in the interfacial region next to the channel wall. Confinement in a nanochannel also facilitates compaction with a neutral crowding agent at low ionic strength. The threshold volume fraction for condensation is proportional to the size of the nanoparticle, due to depletion induced attraction between DNA segments. We found that the effect of crowding is not only related to the colligative properties of the agent and that confinement is also important. It is the interplay between anisotropic confinement and osmotic pressure which gives the elongated conformation and the possibility for condensation at low ionic strength.
机译:用荧光显微镜研究了葡聚糖纳米颗粒对限制在纳米通道中的单个DNA分子的构象和紧密度的影响。可以观察到,随着拥挤剂体积分数的增加,DNA分子会伸长并最终凝结成紧密的形式。在拥挤的条件下,通道直径会有效减小,这可以用通道壁旁界面区域中DNA片段密度的减少来解释。限制在纳米通道中还有助于在低离子强度下用中性拥挤剂进行压实。缩合的阈值体积分数与纳米颗粒的大小成正比,这是由于DNA片段之间的耗尽诱导的吸引。我们发现拥挤的影响不仅与代理的依数属性有关,而且限制也很重要。各向异性的限制和渗透压之间的相互作用导致了伸长的构象,并在低离子强度下产生了缩合的可能性。

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