Evidence for higher-order structure formation by the c-myb 18-mer phosphorothioate antisense (codons 2-7) oligodeoxynucleotide: potential relationship to antisense c-myb inhibition.

M. Vilenchik, L. Benimetsky, A. Kolbanovsky, P. Miller, C. Stein
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引用次数: 4

Abstract

We have demonstrated the formation of higher-order structures (presumably tetraplexes) by an 18-mer phosphorothioate antisense c-myb oligodeoxyribonucleotide that has been shown to have activity in the treatment of leukemia xenograft models. Although not observable by conventionally employed techniques, such as PAGE and dimethyl sulfate (DMS) protection, the formation of such higher-order structures by this oligonucleotide was revealed by several techniques. These included capillary gel electrophoresis (CGE), which demonstrated the presence of molecules with greatly increased retention time compared with the monomer; magnetic circular dichroism spectroscopy, which demonstrated a band at 290 nm, a characteristic of antiparallel tetraplexes; and fluorescence energy transfer measurements. For the last, the 18-mer phosphorothioate oligonucleotide was synthesized with a 5'-fluorescein group. Similar to the molecular beacon model, its fluorescence was quenched when combined in solution with tetraplex-forming oligomers that contained a 3'-Dabcyl moiety. 7-Deazaguanosine inhibits the formation of tetraplexes by eliminated Hoogsteen base pair interactions. The wild-type and 7-deazaguanosine-substituted antisense c-myb oligomers differentially downregulated the expression of the c-myb proto-oncogene in K562 and HL60 cells, with the wild-type oligomer being the least active. The 18-mer c-myb molecule can, therefore, form highly complex structures, whose analysis in solution cannot be limited to examination of slab gel electrophoresis results alone.
c-myb 18聚硫代反义(密码子2-7)寡脱氧核苷酸形成高阶结构的证据:与反义c-myb抑制的潜在关系。
我们已经证明了18聚硫代反义c-myb寡脱氧核糖核苷酸形成的高阶结构(可能是四聚体),该结构已被证明在治疗白血病异种移植模型中具有活性。虽然不能通过传统的技术,如PAGE和硫酸二甲酯(DMS)保护观察到,但这种高阶结构的形成是由这种寡核苷酸通过几种技术揭示的。其中包括毛细管凝胶电泳(CGE),显示与单体相比,存在保留时间大大增加的分子;磁圆二色光谱在290 nm处显示出反平行四聚体的特征;荧光能量转移测量。最后,用5′-荧光素基团合成了18聚硫代寡核苷酸。与分子信标模型类似,当与含有3'-Dabcyl片段的四聚体形成的低聚物结合在溶液中时,其荧光被猝灭。7-去氮杂鸟苷通过消除Hoogsteen碱基对相互作用抑制四聚体的形成。野生型和7-去氮鸟苷取代的反义c-myb低聚物在K562和HL60细胞中差异下调c-myb原癌基因的表达,其中野生型低聚物活性最低。因此,18-mer c-myb分子可以形成高度复杂的结构,其在溶液中的分析不能仅仅局限于平板凝胶电泳结果的检查。
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