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Conformation and dynamics of nucleotides in bulges and symmetric internal loops in duplex DNA studied by EPR and fluorescence spectroscopies

机译:EPR和荧光光谱法研究双链体凸起和对称内部环中核苷酸的构象和动力学

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The dynamics and conformation of base bulges and internal loops in duplex DNA were studied using the bifunctional spectroscopic probe ?, which becomes fluorescent (? f) upon reduction of the nitroxide functional group, along with EPR and fluorescence spectroscopies. A one-base bulge was in a conformational equilibrium between looped-out and stacked states, the former favored at higher temperature and the latter at lower temperature. Stacking of bulge bases was favored in two- and three-base bulges, independent of temperature, resulting in DNA bending as evidenced by increased fluorescence of ? f. EPR spectra of ?-labeled three-, four- and five-base symmetrical interior DNA bulges at 20. °C showed low mobility, indicating that the spin-label was stacked within the loop. The spin-label mobility at 37. °C increased as the loops became larger. A considerable variation in fluorescence between different loops was observed, as well as a temperature-dependence within constructs. Fluorescence unexpectedly increased as the size of the loop decreased at 2. °C. Fluorescence of the smallest loops, where a single T·T mismatch was located between the stem region and the probe, was even larger than for the single strand, indicating a considerable local structural deformation of these loops from regular B-DNA. These results show the value of combining EPR and fluorescence spectroscopy to study non-helical regions of nucleic acids.
机译:用双功能光谱探针β研究了双链DNA中碱基凸起和内部环的动力学和构象,该探针随着一氧化氮官能团的还原而变成荧光(Δf),以及EPR和荧光光谱。一碱基的凸起在环状和堆叠状态之间处于构象平衡,前者在较高温度下有利,而后者在较低温度下有利。凸起碱基的堆积在两碱基和三碱基的凸起中是有利的,与温度无关,导致DNA弯曲,这由β荧光的增强证明。 F。 α标记的三碱基,四碱基和五碱基对称内部DNA凸起在20°C时的EPR谱图显示出较低的迁移率,表明自旋标记物堆叠在环内。随着环变大,在37°C时自旋标记迁移率增加。观察到不同环之间荧光的显着变化,以及构建体内部的温度依赖性。随着环的大小在2°C减小,荧光出乎意料地增加。在茎区域和探针之间存在单个T·T不匹配的最小环的荧光甚至比单链更大,这表明这些环从常规B-DNA发生了相当大的局部结构变形。这些结果表明结合EPR和荧光光谱研究核酸的非螺旋区域的价值。

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