Hall J, Hüsken D, Pieles U, Moser H E, Häner R
Central Research Laboratories, Ciba, Basle, Switzerland.
Chem Biol. 1994 Nov;1(3):185-90. doi: 10.1016/1074-5521(94)90008-6.
A general method allowing the selective destruction of targeted mRNA molecules in vivo would have broad application in biology and medicine. Metal complexes are among the best synthetic catalysts for the cleavage of RNA, and covalent attachment of suitable metal complexes to oligonucleotides allows the cleavage of complementary single-stranded RNAs in a sequence-specific manner.
Using novel europium complexes covalently linked to an oligodeoxyribonucleotide, we have achieved the sequence-specific cleavage of a complementary synthetic RNA. The complexes are completely resistant to chemical degradation under the experimental conditions. The cleavage efficiency of the conjugate strongly depends on the nature of the linker between the oligonucleotide and the complex. Almost complete cleavage of the RNA target has been achieved within 16 h at 37 degrees C.
The results will be important for improving the efficacy of antisense oligonucleotides and will provide a basis for the design of synthetic RNA restriction enzymes. Conjugates of the kind described here may also find application as chemical probes for structural and functional studies of RNA.
一种能够在体内选择性破坏靶向mRNA分子的通用方法在生物学和医学领域将有广泛应用。金属配合物是RNA切割的最佳合成催化剂之一,将合适的金属配合物与寡核苷酸共价连接可使互补单链RNA以序列特异性方式被切割。
使用与寡脱氧核糖核苷酸共价连接的新型铕配合物,我们实现了互补合成RNA的序列特异性切割。在实验条件下,这些配合物完全抗化学降解。缀合物的切割效率强烈取决于寡核苷酸与配合物之间连接子的性质。在37℃下16小时内已实现RNA靶标的几乎完全切割。
这些结果对于提高反义寡核苷酸的功效将具有重要意义,并将为合成RNA限制酶的设计提供基础。此处所述类型的缀合物也可能作为RNA结构和功能研究的化学探针得到应用。