INVESTIGATION OF THE N-1 IMPURITY IN PHOSPHOROTHIOATE OLIGODEOXYNUCLEOTIDES SYNTHESIZED BY THE SOLID-PHASE BETA-CYANOETHYL PHOSPHORAMIDITE METHOD USING STEPWISE SULFURIZATION
Kl. Fearon et al., INVESTIGATION OF THE N-1 IMPURITY IN PHOSPHOROTHIOATE OLIGODEOXYNUCLEOTIDES SYNTHESIZED BY THE SOLID-PHASE BETA-CYANOETHYL PHOSPHORAMIDITE METHOD USING STEPWISE SULFURIZATION, Nucleic acids research, 23(14), 1995, pp. 2754-2761
Electrospray ionization mass spectrometry (ESI-MS) of reversed-phase H
PLC-purified phosphorothioate oligodeoxynucleotides (S-ODNs), and the
single- ('n-1')and double-nucleotide deletion ('n-2') impurities subse
quently isolated from them by preparative polyacrylamide gel electroph
oresis (PAGE), has provided direct analytical data for the identificat
ion of both S-ODN products and their major oligomeric impurities, The
'n-1' impurity seen by PAGE consists of a mixture of ail possible sing
le deletion sequences relative to the parent S-ODN (n-mer) and results
from repetitive, though minor, imperfections in the synthesis cycle,
such as incomplete detritylation, or incomplete coupling followed by i
ncomplete capping or incomplete sulfurization, Therefore each possible
'n-1', 'n-2', and other short-mer sequence is present only in very lo
w abundance, The conversion of the gel-isolated 'n -1' impurity from p
hosphorothioate to phosphodiester followed by base composition-depende
nt anion-exchange chromatography allowed for independent confirmation
of its heterogeneity and quantitation of its various components, ESI-M
S of both S-ODN products and their gel-isolated impurities allowed for
this first molecular identification of 'n-1','n-2' and other oligomer
ic impurities in S-ODNs obtained from state-of-the-art solid-phase syn
thesis and reversed-phase HPLC purification methods.