Nucleic Acids Research · 1994 · 39 citations · 10 references
The efficiency of oligodeoxynucleotide deprotection is greatly enhanced using a combination of: (a) ethanolamine, and especially a mixture of hydrazine, ethanolamine and methanol, in place of the usual aqueous ammonia; (b) tert-butylphenoxyacetyl amino protecting groups, and (c) oxalyl link between the first nucleotide and the polymeric support. The extent of base modification, particularly of C, is shown to be extremely low, and the quality of deprotected oligonucleotides is as high as in the case of ammonia deprotection. This method is also shown to be applicable to the preparation of phosphorothioate and methylphosphonate oligodeoxynucleotides and oligoribonucleotides.
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Stephen A. Scaringe, Christopher S. Francklyn, Nassim Usman · Nucleic Acids Research · 1990 · 263 citations · Full text
Active Oligoribonucleotides, Bioorganic Chemistry, Engineering +18
Oxalyl-CPG: a labile support for synthesis of sensitive oligonucleotide derivatives
Rushdi Alul, Charles N. Singman, Guangrong Zhang et al. · Nucleic Acids Research · 1991 · 106 citations · Full text
Solid-phase synthesis of oligodeoxyribonucleoside methylphosphonates
Paul S. Miller, M. P. Reddy, Akira Murakami et al. · Biochemistry · 1986 · 103 citations