
Helvetica Chimica Acta p. 4111 - 4153 (2002)
Update date:2022-08-03
Topics:
Schoening, Kai-Uwe
Scholz, Peter
Wu, Xiaolin
Guntha, Sreenivasulu
Delgado, Guillermo
Krishnamurthy, Ramanarayanan
Eschenmoser, Albert
Our studies of α-L-Threofuranosyl-(3′ → 2′)-oligonucleotides ('TNA') are part of a systematic experimental inquiry into the base-pairing properties of potentially natural nucleic acid alternatives taken from RNA's close structural neighborhood. TNA is an efficient Watson-Crick base-pairing system and has the capability of informational cross-pairing with both RNA and DNA. This property, together with the system's constitutional and (presumed) generational simplicity, warrants special scrutiny of TNA in the context of the search for chemical clues to RNA's origin.
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