4.8 Article

Structure of the fully modified left-handed cyclohexene nucleic acid sequence GTGTACAC

Journal

JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
Volume 130, Issue 6, Pages 1979-1984

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/ja077313f

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CeNA oligonucleotides consist of a phosphorylated backbone where the deoxyribose sugars are replaced by cyclohexene moieties. The X-ray structure determination and analysis of a fully modified octamer sequence GTGTACAC, which is the first crystal structure of a carbocyclic-based nucleic acid, is presented. This particular sequence was built with left-handed building blocks and crystallizes as a left-handed double helix. The helix can be characterized as belonging to the (mirrored) A-type family. Crystallographic data were processed up to 1.53 angstrom, and the octamer sequence crystallizes in the space group R32. The sugar puckering is found to adopt the H-3(2) half-chair conformation which mimics the C3'-endo conformation of the ribose sugar. The double helices stack on top of each other to form continuous helices, and static disorder is observed due to this end-to-end stacking.

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