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硫代磷酸酯手性对i-基序结构和稳定性的影响。

Effect of phosphorothioate chirality on i-motif structure and stability.

作者信息

Kanaori Kenji, Sakamoto Shunji, Yoshida Hiroyuki, Guga Pitor, Stec Wojtech, Tajima Kunihiko, Makino Keisuke

机构信息

Department of Applied Biology, Kyoto Institute of Technology, Matsugasaki, Sakyo-ku, Kyoto 606-8585, Japan.

出版信息

Biochemistry. 2004 May 18;43(19):5672-9. doi: 10.1021/bi035419r.

Abstract

The P-chiral stereo-defined phosphorothioate groups have been introduced into all of the four internucleotide positions of d(T(PS1)C(PS2)C(PS3)C(PS4)C) (PSn = phosphorothioate group), and among the 16 possible diastereomers of PS-d(TC(4)), 10 stereomers have been synthesized to investigate the effects of the sense of the P-chirality upon the structure and stability of the i-motif structure. The temperature dependence of circular dichroism spectra showed that the melting temperature (T(m)) of the [all R(p)]-PS-d(TC(4)) i-motifs was 31 degrees C, identical to that of the parent oligomer, PO-d(TC(4)), while that of the [all S(p)]-PS-d(TC(4)) i-motif was largely decreased by 11 degrees C. Single substitution of R(p) with S(p) caused a decrease of T(m) by 3-4 degrees C at positions of PS1, PS2, and PS3 and by 1 degrees C at that of PS4, showing the additive property of the T(m) suppression. The comparison of the NOESY spectra between [all R(p)]-PS-, [all S(p)]-PS-, and PO-d(TC(4)) showed that intraresidual H6-H3' and H2' '-H4' NOE cross-peaks of the all S(p) isomer are weaker than those of the all R(p) isomer and PO-d(TC(4)), indicating the change in the C3'-endo conformation and glycosidic bond angle. The structural alternation for the i-motif formed by [all S(p)]-PS-d(TC(4)) is also suggested by the chemical shift differences of C2/C3/C4 H2''and H4' protons from those of [all R(p)]-PS-d(TC(4)) and PO-d(TC(4)). These results suggest that the S(p) configuration at phosphorus of the phosphorothioate linkage changes the sugar-phosphorothioate conformation and intermolecular interaction in the narrow groove, leading to the destabilization of the i-motif structure.

摘要

P-手性立体定义的硫代磷酸酯基团已被引入到d(T(PS1)C(PS2)C(PS3)C(PS4)C)(PSn = 硫代磷酸酯基团)的所有四个核苷酸间位置,在PS-d(TC(4))的16种可能的非对映异构体中,已合成了10种立体异构体,以研究P-手性方向对i-基序结构的结构和稳定性的影响。圆二色光谱的温度依赖性表明,[全R(p)]-PS-d(TC(4)) i-基序的解链温度(T(m))为31℃,与亲本寡聚物PO-d(TC(4))相同,而[全S(p)]-PS-d(TC(4)) i-基序的解链温度大幅降低了11℃。在PS1、PS2和PS3位置用S(p)单取代R(p)导致T(m)降低3-4℃,在PS4位置降低1℃,显示出T(m)抑制的加和性。[全R(p)]-PS-、[全S(p)]-PS-和PO-d(TC(4))的NOESY光谱比较表明,全S(p)异构体的残基内H6-H3'和H2''-H4' NOE交叉峰比全R(p)异构体和PO-d(TC(4))的弱,表明C3'-内型构象和糖苷键角发生了变化。[全S(p)]-PS-d(TC(4))形成的i-基序的结构变化也由C2/C3/C4 H2''和H4'质子相对于[全R(p)]-PS-d(TC(4))和PO-d(TC(4))的化学位移差异所表明。这些结果表明,硫代磷酸酯键磷原子上的S(p)构型改变了糖-硫代磷酸酯构象和窄沟中的分子间相互作用,导致i-基序结构不稳定。

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