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Probing triplex formation by EPR spectroscopy using a newly synthesized spin label for oligonucleotides

机译:使用新合成的寡核苷酸自旋标记,通过EPR光谱探测三链体形成

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Spin labels have been extensively used to study the dynamics of oligonucleotides. Spin labels that are more rigidly attached to a base in an oligonucleotide experience much larger changes in their range of motion than those that are loosely tethered. Thus, their electron paramagnetic resonance spectra show larger changes in response to differences in the mobility of the oligonucleotides to which they are attached. An example of this is 5-(2,2,5,5-tetra-methyl-3-ethynylpyrrolidine-1-oxyl)-urudine (1). However, the synthesis of this modified DNA base is quite involved and, here, we report the synthesis of a new spin-labeled DNA base, 5-(2,2,6,6-tetramethyl-4-ethynylpiperidyl-3-ene-1-oxyl)-uridine (2). This spin label is readily prepared in half the number of steps required for 1, and yet behaves in a spectroscopically analogous manner to 1 in oligonucleotides. Finally, it is shown here that both spin labels 1 and 2 can be used to detect the formation of both double-stranded and triplex DNA.
机译:自旋标记已被广泛用于研究寡核苷酸的动力学。与松散拴系的旋转标记相比,在寡核苷酸中更牢固地连接至碱基的旋转标记经历了更大的运动范围变化。因此,它们的电子顺磁共振谱显示出响应于它们所连接的寡核苷酸的迁移率差异的较大变化。这样的一个例子是5-(2,2,5,5-四甲基-3-乙炔基吡咯烷-1-氧基)-乌鲁丁(1)。但是,这种修饰的DNA碱基的合成非常复杂,在这里,我们报道了新的自旋标记DNA碱基5-(2,2,6,6-tetramethyl-4-ethynylpiperidyl-3-ene- 1-氧基)-尿苷(2)。该自旋标记很容易以1所需步骤的一半数量制备,但在光谱上与寡核苷酸中的1相似。最后,此处显示自旋标记1和2均可用于检测双链和三链DNA的形成。

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