Thiols react at room temperature in dilute solution with 8-azidoadenosine and its nucleotides to give the corresponding 8-aminoadenosine derivatives. The reaction which takes place in the dark is base-catalysed and is particularly rapid when dithiols, e.g. dithiothreitol are used.
Y CV4 7 A L (a) A. M. Michelson, 'The Chemistry of Nucieosides and Nucleotides', Academic Press New York, 1963; (6) 'Basic Principles in Nucleic Acid Chemistry', ed. P. 0. P. T'so Academic Press, New York, 1974, Vols. 1 and 2; ( c ) 'Organic Chemistry of Nucleic Acids', ed. N. K. Kochetkov and E. I. Budovskii, Plenum Press, London and New York, 1972 Vols. 1 and 2.
5-(Phosphonomethyl)-1H-tetrazole and a number of related tetrazoles have been prepared and their effects on the replication of Herpes Simplex Viruses-1 and -2 have been investigated as well as their abilities to inhibit the DNA polymerases induced by these viruses and the RNA transcriptase activity of influenza virus A. Contrary to an earlier report, 5-(phosphonomethyl)-1H-tetrazole was not an efficient inhibitor of the replication of HSV-1 and HSV-2 in tissue culture. Analogues of 5-(phosphonomethyl)-1H-tetrazole were also devoid of significant antiviral activity. Only 5-(phosphonomethyl)-1H-tetrazole and 5-(thiophosphonomethyl)-1H-tetrazole inhibited the influenza virus transcriptase, and both were more effective as inhibitors than phosphonoacetic acid under the same conditions. The DNA polymerases induced by HSV-1 and HSV-2 were inhibited slightly by 5-(phosphonomethyl)-1H-tetrazole and to a lesser extent by its N-ethyl analogue and 3-(phosphonomethyl)-1H-1,2,4-triazole. None of these compounds were as effective as phosphonoacetic acid. 5-(Thiophosphonomethyl)-1H-tetrazole was a better inhibitor of the DNA polymerase induced by HSV-1 than 5-(phosphonomethyl)-1H-tetrazole.
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