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Difficult deoxyribonucleotide sequences in the solid-phase synthesis by the phosphoramidite chemistry

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TAYLOR & FRANCIS INC
DOI: 10.1080/15257770.2023.2295478

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Phosphoramidite chemistry-based solid-phase synthesis; oligonucleotides; difficult sequence; dinucleotide step; anion exchange HPLC

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This work catalogued the oligonucleotide sequences and their composition based on their overall yield. It was found that sequences containing more 2'-deoxyadenosine residues and specific dinucleotide steps tend to have lower yields.
This work catalogued oligonucleotide sequences and sequence compositions based on the overall yield of full-length product obtained by the phosphoramidite chemistry-based solid phase synthesis. In total, 76 sequences with different dinucleotide and trinucleotide repeats were synthesized, and the fully-deprotected products were analyzed by denaturing anion exchange HPLC. Overall, sequences containing more 2'-deoxyadenosine residues were obtained in relatively lower yields, likely due to the relative ease of 2'-deoxyadenosine to undergo depurination during the detritylation reaction. Furthermore, dinucleotide steps, such as d(CG)/d(GC) and d(AG)/d(GA), likely contribute the overall lower yields of full-length products as well.

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