Identification of the Synthesis of Guanosine Tetraphosphate (MS I) as Insertion of a Pyrophosphoryl Group into the 3′-Position in Guanosine 5′-Diphosphate
Author(s) -
José Sy,
Fritz Lipmann
Publication year - 1973
Publication title -
proceedings of the national academy of sciences
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 5.011
H-Index - 771
eISSN - 1091-6490
pISSN - 0027-8424
DOI - 10.1073/pnas.70.2.306
Subject(s) - guanosine , chemistry , nucleotide , escherichia coli , transfer rna , ribosome , biochemistry , gtp' , guanosine monophosphate , guanosine triphosphate , stereochemistry , guanosine diphosphate , enzyme , rna , gene
The phosphate transfer system of Haseltine et al., consisting of a ribosomal wash obtained from a stringent strain of Escherichia coli, washed ribosomes, GTP, and ATP, was used to prepare large quantities of guanosine tetra- and pentaphosphates, the magic spot compounds MS I and MS II of Cashel and Gallant. In our hands, the Haseltine et al. system yielded predominantly guanosine tetraphosphate, ppGpp. This system was used exclusively in the described experiments, with ATP labeled with (32)P in the beta- and gamma-positions as donor. The beta-label was found to produce a ppGp⃰p and the gamma-label a ppGpp⃰. Furthermore, [(3)H]GDP + [gamma-(32)P]ATP yielded ppGpp in a (3)H:(32)P ratio of 1:1. The results indicate a transfer of the terminal pyrophosphoryl group of ATP as a unit. The position of the transferred pyrophosphoryl was assayed for by preparation of pGp⃰ from ppGp⃰p with Zn(++)-activated inorganic pyrophosphatase from yeast. The pGp⃰ was then assayed with 3'-nucleotidase, which liberated practically all the labeled phosphate. This result indicate that the phosphate transfer from ATP to GDP yields guanosine 5'-diphosphate-3'-diphosphate.
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