2,3′-Anhydrothymidine may be derivitized to 5′-benzoyl-2′,3′-anhydrothymidine for use in the synthesis of 5′-Derivatives of 3′-(tetrazole-2′-yl)-3′-deoxythymidines. 2,3′-Anhydrothymidine may be contacted with thioacetic acid to produce 3′-S-acetyl-3′-thio-2′-deoxynucleosides.
5''-Derivatives of 3'-(tetrazole-2''-yl)-3'-deoxythymidines were synthesized by interaction of 5'-benzoyl-2',3'-anhydrothymidine with tetrazole or its 5-derivatives followed by debenzoylation. Structures of two of them, 3'-(tetrazole-2''-yl)-3'-deoxythymidine and 3'-(5''-methyltetrazole-2''-yl)-3'-deoxythymidine, elucidated by X-ray analysis, revealed anti conformation of thymine about the glycosidic bond and 2'-endo-3'-exo-conformation
A general method is described for synthesizing 3',5'-dithio-2'-deoxypyrimidine nucleosides 6 and 13 from normal 2'-deoxynucleosides. 2,3'-Anhydronucleosides 2 and 9 are applied as intermediates in the process to reverse the conformation of 3'-position on sugar rings. The intramolecular rings of 2,3'-anhydrothymidine
Methods in molecular biology (Clifton, N.J.), 329, 45-58 (2006-07-19)
The in vitro differentiation of mouse embryonic stem (ES) cells into different somatic cell types such as neurons, endothelial cells, or myocytes is well established, and many mouse ES cell lines have been created so far. The establishment of rat
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