首页> 外文期刊>Journal of molecular recognition: JMR >Tetraplex formation of surface-immobilized human telomere sequence probed by surface plasmon resonance using single-stranded DNA binding protein.
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Tetraplex formation of surface-immobilized human telomere sequence probed by surface plasmon resonance using single-stranded DNA binding protein.

机译:使用单链DNA结合蛋白通过表面等离振子共振探测的表面固定的人类端粒序列的四链体形成。

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摘要

Many sequences in genomic DNA are able to form unique tetraplex structures. Such structures are involved in a variety of important cellular processes and are emerging as a new class of therapeutic targets for cancers and other diseases. Screening for molecules targeting the tetraplex structure has been explored using such sequences immobilized on solid surfaces. Immobilized nucleic acids, in certain situations, may better resemble the molecules under in vivo conditions. In this report, we studied the formation of tetraplex structure of both the G-rich and C-rich strands of surface-immobilized human telomere sequence by surface plasmon resonance using the single-stranded DNA binding protein from Escherichia coli as probe. We demonstrate how the formation of G-quadruplex and i-motif could be probed under various conditions by this sequence-universal method. Our results also show that immobilization destabilized the tetraplex structure.
机译:基因组DNA中的许多序列能够形成独特的四重结构。这样的结构涉及各种重要的细胞过程,并且正在作为癌症和其他疾病的新型治疗靶标出现。已经使用固定在固体表面上的序列探索了靶向四链体结构的分子的筛选。在某些情况下,固定的核酸可能在体内条件下更好地类似于分子。在此报告中,我们使用来自大肠杆菌的单链DNA结合蛋白通过表面等离振子共振研究了表面固定的人端粒序列的G富集和C富集链的四链体结构的形成。我们展示了如何通过此序列通用方法在各种条件下探测G-四链体和i-基序的形成。我们的结果还表明,固定化使四重结构不稳定。

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