1. Academic Validation
  2. 2'- O-(N-(Aminoethyl)carbamoyl)methyl Modification Allows for Lower Phosphorothioate Content in Splice-Switching Oligonucleotides with Retained Activity

2'- O-(N-(Aminoethyl)carbamoyl)methyl Modification Allows for Lower Phosphorothioate Content in Splice-Switching Oligonucleotides with Retained Activity

  • Nucleic Acid Ther. 2022 Jun;32(3):221-233. doi: 10.1089/nat.2021.0086.
Dmytro Honcharenko 1 Cristina S J Rocha 2 Karin E Lundin 2 Jyotirmoy Maity 1 Stefan Milton 1 Ulf Tedebark 1 Merita Murtola 1 Malgorzata Honcharenko 1 Andis Slaitas 3 C I Edvard Smith 2 Rula Zain 2 4 Roger Strömberg 1
Affiliations

Affiliations

  • 1 Department of Biosciences and Nutrition, Karolinska Institutet, Huddinge, Sweden.
  • 2 Department of Laboratory Medicine, Clinical Research Center, Karolinska Institutet, Karolinska University Hospital, Huddinge, Sweden.
  • 3 Syntagon Baltic, Babites novads, Latvia.
  • 4 Department of Clinical Genetics, Center for Rare Diseases, Karolinska University Hospital, Stockholm, Sweden.
Abstract

2'-O-(N-(Aminoethyl)carbamoyl)methyl (2'-O-AECM)-modified Oligonucleotides (ONs) and their mixmers with 2'-O-methyl Oligonucleotides (2'-OMe ONs) with phosphodiester linkers as well as with partial and full phosphorothioate (PS) inclusion were synthesized and functionally evaluated as splice-switching Oligonucleotides in several different reporter cell lines originating from different tissues. This was enabled by first preparing the AECM-modified A, C, G and U, which required a different strategy for each building block. The AECM modification has previously been shown to provide high resistance to enzymatic degradation, even without PS linkages. It is therefore particularly interesting and unprecedented that the 2'-O-AECM ONs are shown to have efficient splice-switching activity even without inclusion of PS linkages and found to be as effective as 2'-OMe PS ONs. Importantly, the PS linkages can be partially included, without any significant reduction in splice-switching efficacy. This suggests that AECM modification has the potential to be used in balancing the PS content of ONs. Furthermore, conjugation of 2'-O-AECM ONs to an endosomal escape peptide significantly increased splice-switching suggesting that this effect could possibly be due to an increase in uptake of ON to the site of action.

Keywords

2′-O-(N-(aminoethyl)carbamoyl)methyl modification; cell-penetrating ONs; cellular uptake; oligonucleotide–peptide conjugate; phosphorothioate linkage; splice-switching oligonucleotides.

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