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The chemistry of 2' ,3'-seconucleosides II. Reactions and biological properties of 2',3'-secopyrimidine ribonucleosides
Authors:A Stanley Jones  Michael J McClean  Hironichi Tanaka  Richard T Walker  Jan Balzarini  Erik De Clercq
Institution:

b Chemistry Department, University of Birmingham, Birmingham B15 2TT UK

a Rega Institute for Medical Research, Katholieke Universiteit Leuven, B-3000 Leuven Belgium

Abstract:Reaction of 2',3'-secouridine with acetone gave the 3',5'-O-isopropylidene derivative (1) which upon treatment with mesylchloride gave the 2'-O-mesyl compound (2). Replacement of the mesyl group of 2 with halide could be effected by reaction with a metal halide in DMF. The 3',5'-O-isopropylidene group was removed simultaneously to give a 2'-halogeno-2'-deoxy-2',3'-secouridine. 2',3'-Dichloro-2',3'-dideoxy-2',3'-secouridine upon treatment with base gave 6(R)-chloromethyl-2(R)-(uracil-1-yl)-1,4-dioxane in addition to O2,2'-anhydro-3'-chloro-3'-deoxy-2',3'-secouridine, as previously reported. 2',3'-Dichloro-2',3'-dideoxy-5'-0-trityl-2',3'-secouridine was converted to 2',3'-dichloro-2',3'-dideoxy-2',3'-secocytidine (16) via a triazole derivative. Compound 16 was unstable and appeared to form O2,2'-anhydro-3'-chloro-3'-deoxy-2,3'-secocytidine upon standing at room temperature. 5-Vinyl- and 5-(E) (2-bromovinyl) uridine dialdehydes have been made, as well as a number of other 5-substituted 2',3'-secouridine derivatives. None of the compounds obtained showed significant activity against a number of virus strains or tumor cell lines, except for 5-(E)(2-bromovinyl) uridine dialdehyde, which was inhibitory to the growth of human lymphoblast (Raji, Namalva) cells at a concentration of 28 μ/ml.
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