首页> 外文OA文献 >Structural basis for the RNA binding selectivity of oligonucleotide analogues containing alkylsulfide internucleoside linkages and 2'-substituted 3'-deoxyribonucleosides.
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Structural basis for the RNA binding selectivity of oligonucleotide analogues containing alkylsulfide internucleoside linkages and 2'-substituted 3'-deoxyribonucleosides.

机译:包含烷基硫醚核苷间键和2'-取代的3'-脱氧核糖核苷的寡核苷酸类似物的RNA结合选择性的结构基础。

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摘要

In this report we describe the synthesis of oligonucleotides containing sulfide-linked dinucleoside units, namely rT(2'OH)sdT, rT(2'OMe)sdT, dTsrU(2'OMe) and dT(2'OMe)srU(2'OMe). We also describe the interactions of such oligomers with complementary DNA and RNA targets, and provide the structural basis for their remarkable RNA binding selectivity. In all cases, the Tm values of the S/P-chimera duplexes were lower than those of the corresponding unmodified duplexes. We attribute this to steric interactions between the 5'sulfur and the atoms of the nearby base/sugar residues. The 2'-substituents (i.e., 2'OH or 2'OMe) vicinal to the alkylsulfide internucleoside linkage significantly perturb the structure and stability of the duplexes formed with DNA, and more so than with RNA. The introduction of three rT(2'OH)sdTp (or rT(2'OMe)sdTp) units into an oligodeoxynucleotide sequence was sufficient to abolish binding to complementary DNA but not RNA. The same three substitutions with dTsrU(2'OMe)p and dT(2'OMe)srU(2'OMe)p did not abolish binding to DNA but the resulting complexes had poor thermal stability. The RNA-binding 'selectivity' exhibited by these oligomers is attributed to the tendency of the 2'-substituted (branched) furanoses to adopt the C3'-endo pucker, a conformation that is inconsistent with the B-form structure of helical DNA. The preference of these sugars to exist often exclusively in the C3'-endo form is attributed to stereoelectronic effects, namely gauche and anomeric effects. Our findings support the hypothesis that nucleoside analogues puckered exclusively in the C3'-endo form may result in them being especially good binders of targeted mRNA [S.H. Kawai (1991), Ph.D. Thesis, McGill University; Kawasaki et al. (1993) J. Med. Chem. 36, 831-841].
机译:在本报告中,我们描述了包含硫化物连接的二核苷单元即rT(2'OH)sdT,rT(2'OMe)sdT,dTsrU(2'OMe)和dT(2'OMe)srU(2' OMe)。我们还描述了这种寡聚体与互补的DNA和RNA靶标的相互作用,并为其非凡的RNA结合选择性提供了结构基础。在所有情况下,S / P-嵌合双链体的Tm值均低于相应的未修饰双链体的Tm值。我们将此归因于5'硫与附近的碱基/糖残基的原子之间的空间相互作用。与烷基硫醚核苷间键相邻的2'取代基(即2'OH或2'OMe)显着干扰了DNA形成的双链体的结构和稳定性,而RNA则更是如此。在寡脱氧核苷酸序列中引入三个rT(2'OH)sdTp(或rT(2'OMe)sdTp)单元足以消除与互补DNA的结合,但不能消除RNA。用dTsrU(2'OMe)p和dT(2'OMe)srU(2'OMe)p进行的相同的三个取代并未消除与DNA的结合,但所得复合物的热稳定性较差。这些寡聚体表现出的结合RNA的“选择性”归因于2'-取代的(支链)呋喃糖酶倾向于采用C3'-内基折叠的趋势,这种构象与螺旋DNA的B-型结构不一致。这些糖通常仅以C3'-内源形式存在的偏好归因于立体电子效应,即薄纱和异头效应。我们的发现支持这样的假说,即仅以C3'-endo形式折叠的核苷类似物可能导致它们成为靶向mRNA的特别好的结合物。 Kawai(1991),博士学位麦吉尔大学论文;川崎等。 (1993)J. Med。化学36,831-841]。

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