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电场脉冲诱导的核酸双螺旋相互作用

Interactions of nucleic acid double helices induced by electric field pulses.

作者信息

Porschke D, Meier H J, Ronnenberg J

出版信息

Biophys Chem. 1984 Oct;20(3):225-35. doi: 10.1016/0301-4622(84)87027-1.

Abstract

Electric field pulses induce a substantial increase of the light scattering intensity of double-helical DNA. The relative change of light scattering and also the reciprocal relaxation time constants under electric field pulses increase with increasing nucleotide concentration. These observations, together with a large difference between dichroism orientation time constants and light scattering time constants under electric field pulses, demonstrate that the main part of the light scattering effect is due not to field-induced orientation but to interactions between DNA helices. From the concentration dependence of the light scattering time constants we obtain, according to an isodesmic reaction model, association rate constants in the range 3 X 10(10) M-1 helices s-1 for DNA with approx. 300 base-pairs. These values are at the limit of a diffusion-controlled DNA association and do not show any dependence upon the field strength. The dissociation rate constants kd decrease strongly with increasing field strength E and thus demonstrate that the interactions between the helices are induced by the electric field. This conclusion is consistent with independent measurements which do not reveal any DNA association at zero field strength. The observed linear relation between log(kd) and E2 suggests a field-induced reaction driven by dipole changes. According to this interpretation the change of dipole moment should be in the range of approx. 1400 debye. The dissociation rates for DNA helices with approx. 300 to approx. 800 base-pairs strongly increase with increasing salt concentration (measured in the range 1-5 mM ionic strength), whereas the association rate constants remain virtually unchanged. Measurements of the linear dichroism in the same range of DNA chain length demonstrate that for long field pulses of e.g., 40 microseconds, the amplitude approaches a maximum value and then decreases. The dichroism relaxation curves observed after long field pulses exhibit a component with a positive dichroism and an increased decay time. These observations suggest the formation of a DNA aggregate with an unusual arrangement of the bases.

摘要

电场脉冲会使双螺旋DNA的光散射强度大幅增加。在电场脉冲作用下,光散射的相对变化以及倒数弛豫时间常数会随着核苷酸浓度的增加而增大。这些观察结果,连同电场脉冲下二色性取向时间常数与光散射时间常数之间的巨大差异,表明光散射效应的主要部分并非源于场诱导取向,而是由于DNA螺旋之间的相互作用。根据等键反应模型,从光散射时间常数的浓度依赖性中,我们得出对于约300个碱基对的DNA,缔合速率常数在3×10¹⁰ M⁻¹螺旋⁻¹秒⁻¹范围内。这些值处于扩散控制的DNA缔合的极限,并且不显示对场强的任何依赖性。解离速率常数kd随着场强E的增加而强烈下降,从而表明螺旋之间的相互作用是由电场诱导的。这一结论与在零场强下未发现任何DNA缔合的独立测量结果一致。观察到的log(kd)与E²之间的线性关系表明存在由偶极变化驱动的场诱导反应。根据这种解释,偶极矩的变化应在约1400德拜的范围内。对于约300至约800个碱基对的DNA螺旋,解离速率随着盐浓度的增加(在1 - 5 mM离子强度范围内测量)而强烈增加,而缔合速率常数实际上保持不变。在相同DNA链长范围内对线性二色性的测量表明,对于例如40微秒的长场脉冲,振幅接近最大值然后减小。长场脉冲后观察到的二色性弛豫曲线呈现出具有正二色性和增加的衰减时间的成分。这些观察结果表明形成了一种碱基排列异常的DNA聚集体。

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