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Right-handed double-helix ultrashort DNA yields chiral nematic phases with both right- and left-handed director twist

机译:右手双螺旋超短DNA产生手征向列相且右手和左手指向矢都扭曲

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摘要

Concentrated solutions of duplex-forming DNA oligomers organize into various mesophases among which is the nematic (N), which exhibits a macroscopic chiral helical precession of molecular orientation because of the chirality of the DNA molecule. Using a quantitative analysis of the transmission spectra in polarized optical microscopy, we have determined the handedness and pitch of this chiral nematic helix for a large number of sequences ranging from 8 to 20 bases. The B-DNA molecule exhibits a right-handed molecular double-helix structure that, for long molecules, always yields N phases with left-handed pitch in the μm range. We report here that ultrashort oligomeric duplexes show an extremely diverse behavior, with both left- and right-handed N helices and pitches ranging from macroscopic down to 0.3 μm. The behavior depends on the length and the sequence of the oligomers, and on the nature of the end-to-end interactions between helices. In particular, the N handedness strongly correlates with the oligomer length and concentration. Right-handed phases are found only for oligomers shorter than 14 base pairs, and for the sequences having the transition to the N phase at concentration larger than 620 mg/mL. Our findings indicate that in short DNA, the intermolecular double-helical interactions switch the preferred liquid crystal handedness when the columns of stacked duplexes are forced at high concentrations to separations comparable to the DNA double-helix pitch, a regime still to be theoretically described.
机译:形成双链体的DNA寡聚物的浓缩溶液组织成各种中间相,其中有向列相(N ),由于DNA分子的手性,它呈现出分子取向的宏观手性螺旋旋进。使用偏振光学显微镜中透射光谱的定量分析,我们已经确定了从8个碱基到20个碱基的大量序列的手性向列螺旋的旋度和螺距。 B-DNA分子表现出右旋分子双螺旋结构,对于长分子,总是产生N 相,左旋间距在μm范围内。我们在这里报告说,超短寡聚物双链体表现出极为多样的行为,左旋和右旋N 螺旋和螺距均从宏观到0.3μm不等。行为取决于寡聚物的长度和序列,以及螺旋之间端对端相互作用的性质。特别地,N * 惯性与低聚物的长度和浓度密切相关。仅对短于14个碱基对的寡聚体以及浓度大于620 mg / mL的具有过渡到N 相的序列的右旋相才发现。我们的发现表明,在短的DNA中,当堆叠的双链体的列以高浓度被迫达到与DNA双螺旋节距相当的间距时,分子间双螺旋相互作用会切换首选的液晶手性,该机制尚需理论上描述。

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