Synthesis and Application of 4'-C-[(N-alkyl)aminoethyl]thymidine Analogs for Optimizing Oligonucleotide Properties
Kota Fujiki1, Yuri Kakisawa2, Elsayed M Mahmoud2,3
1Department of Life Science and Chemistry, The Graduate School of Natural Science and Technology, Gifu University, 1-1 Yanagido, Gifu 501-1193, Japan.
Abstract:
Gapmer-type antisense oligonucleotides (ASOs) are an emerging class of therapeutic agents that directly inhibit pathogenic mRNA. In this study, three new 4'-C-substituted thymidine analogs were generated using a synthetic strategy recently established by our group, namely, 4'-C-(N-ethyl) aminoethyl (4'-EAE-T), 4'-C-(N-butyl) aminoethyl (4'-BAE-T), and 4'-C-(N-octyl) aminoethyl (4'-OAE-T). Their properties were evaluated and compared with those of previously reported analogs, including 4'-C-aminoethyl (4'-AE-T) and 4'-C-(N-methyl) aminoethyl (4'-MAE-T). The novel nucleoside analogs were subsequently incorporated into gapmer-type ASOs featuring phosphorothioate (PS) linkages and locked nucleic acids (LNAs) in the wing regions. The incorporation of 4'-EAE-T and 4'-BAE-T analogs resulted in RNA binding affinities similar to that of the previously reported 4'-MAE-T analog, whereas a marked decrease in RNA affinity was noted for 4'-OAE-T, however, this reduction was mitigated when combined with other chemical modifications. Furthermore, the structural modifications conferred enhanced nuclease resistance under bovine serum conditions, with 4'-EAE-T resulting in the highest stability, followed by 4'-BAE-T and 4'-OAE-T. Additionally, oligonucleotides modified with the developed analogs preserved their RNase H cleavage susceptibility, albeit inducing minor alterations in the cleavage pattern. Finally, the oligonucleotides were applied in a gene silencing experiment targeting the KRAS gene, conducted without the use of transfection agents, displaying gene silencing activities comparable to that of the control, with the exception of the 4'-OAE-modified nucleotide, which exhibited low activity.


