Photocontrolled Synthesis of Abiotic Sequence-Defined Oligo(Phosphodiester)s.
Niklas Felix KönigSofia TelitelSalomé PoyerLaurence CharlesJean-François LutzPublished in: Macromolecular rapid communications (2017)
A photoregulated phosphoramidite iterative process is studied for the synthesis of non-natural, digitally encoded oligo(phosphodiester)s. The oligomers are prepared using two reactive phosphoramidite monomers containing a 2-(2-nitrophenyl)propoxycarbonyl (NPPOC) protected OH group. The stepwise synthesis is performed on an OH-functional soluble polystyrene support, which allows recycling by precipitation in a nonsolvent. Repeating cycles involving phosphoramidite coupling, oxidation of phosphite to phosphate, and NPPOC deprotection by light irradiation at λ = 365 nm are performed in order to prepare oligomers with different lengths and sequences. Synthesis is conducted on a micromolar scale and good recycling yields are obtained in all cases. The use of a soluble polymer support allows an in-depth characterization of the NPPOC photo-deprotection step by 1 H NMR, UV spectroscopy, and size exclusion chromatography, and thus identification of optimal synthesis conditions. After cleavage from the support, the oligo(phosphodiester)s are characterized by tandem mass spectrometry, which confirms preparation of uniform sequence-coded oligomers.
Keyphrases
- tandem mass spectrometry
- high resolution
- high performance liquid chromatography
- liquid chromatography
- ultra high performance liquid chromatography
- mass spectrometry
- magnetic resonance
- magnetic resonance imaging
- gas chromatography
- simultaneous determination
- computed tomography
- hydrogen peroxide
- dna binding
- amino acid
- molecularly imprinted
- image quality
- aqueous solution