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傅里叶变换红外光谱法研究侧翼序列对DNA结合位点结构和灵活性的影响。

An FTIR investigation of flanking sequence effects on the structure and flexibility of DNA binding sites.

作者信息

Kahn Talia R, Fong Kimberly K, Jordan Brian, Lek Janista C, Levitan Rachel, Mitchell Patrick S, Wood Corrina, Hatcher Mary E

机构信息

Joint Science Department, Claremont McKenna, Pitzer, and Scripps Colleges, Claremont, California 91711, USA.

出版信息

Biochemistry. 2009 Feb 17;48(6):1315-21. doi: 10.1021/bi8015235.

Abstract

Fourier transform infrared (FTIR) spectroscopy and a library of FTIR marker bands have been used to examine the structure and relative flexibilities conferred by different flanking sequences on the EcoRI binding site. This approach allowed us to examine unique peaks and subtle changes in the spectra of d(AAAGAATTCTTT)(2), d(TTCGAATTCGAA)(2), and d(CGCGAATTCGCG)(2) and thereby identify local changes in base pairing, base stacking, backbone conformation, glycosidic bond rotation, and sugar puckering in the studied sequences. The changes in flanking sequences induce differences in the sugar puckers, glycosidic bond rotation, and backbone conformations. Varying levels of local flexibility are observed within the sequences in agreement with previous biological activity assays. The results also provide supporting evidence for the presence of a splay in the G(4)-C(9) base pair of the EcoRI binding site and a potential pocket of flexibility at the G(4) cleavage site that have been proposed in the literature. In sum, we have demonstrated that FTIR is a powerful methodology for studying the effect of flanking sequences on DNA structure and flexibility, for it can provide information about the local structure of the nucleic acid and the overall relative flexibilities conferred by different flanking sequences.

摘要

傅里叶变换红外(FTIR)光谱学以及FTIR标记带库已被用于研究不同侧翼序列赋予EcoRI结合位点的结构和相对柔韧性。这种方法使我们能够检测d(AAAGAATTCTTT)(2)、d(TTCGAATTCGAA)(2)和d(CGCGAATTCGCG)(2)光谱中的独特峰和细微变化,从而识别所研究序列中碱基配对、碱基堆积、主链构象、糖苷键旋转和糖环构象的局部变化。侧翼序列的变化会导致糖环构象、糖苷键旋转和主链构象的差异。在所研究的序列中观察到了不同程度的局部柔韧性,这与之前的生物活性测定结果一致。这些结果也为文献中提出的EcoRI结合位点的G(4)-C(9)碱基对中存在展开结构以及G(4)切割位点处存在潜在柔韧性口袋提供了支持证据。总之,我们已经证明FTIR是一种研究侧翼序列对DNA结构和柔韧性影响的强大方法,因为它可以提供有关核酸局部结构以及不同侧翼序列赋予的整体相对柔韧性的信息。

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