Topics in Microbial PhysiologyP. Tauro International Bioscience Publishers, 1974 - 275 pagine |
Dall'interno del libro
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Pagina 215
... Reduction of azide to N2 and NH requires two electrons . Surprisingly , N2 pro- duced during azide reduction is not further reduced to ammo- nia , although the affinity of Ns for nitrogenase is only one- tenth that of N2 . The rate of ...
... Reduction of azide to N2 and NH requires two electrons . Surprisingly , N2 pro- duced during azide reduction is not further reduced to ammo- nia , although the affinity of Ns for nitrogenase is only one- tenth that of N2 . The rate of ...
Pagina 217
... reduction of HCN by nitrogenase results in equivalent amounts of methane and ammonia . Four electron reduction of HCN , however , produces methylamine in amounts equivalent to 10 % of the major products . Methylamine is the only four ...
... reduction of HCN by nitrogenase results in equivalent amounts of methane and ammonia . Four electron reduction of HCN , however , produces methylamine in amounts equivalent to 10 % of the major products . Methylamine is the only four ...
Pagina 218
... reduction to 2H2O + H2 is a competing reaction in the reduction of all substrates and is accompanied by ATP hydrolysis . 5 ) Reductive cleavage occurs only with NEN , NEC , N = 0 bond , but not with C = C bonds . 6 ) C = C bonds are ...
... reduction to 2H2O + H2 is a competing reaction in the reduction of all substrates and is accompanied by ATP hydrolysis . 5 ) Reductive cleavage occurs only with NEN , NEC , N = 0 bond , but not with C = C bonds . 6 ) C = C bonds are ...
Sommario
3 | 28 |
In Vitro Synthesis of | 41 |
In vivo Replication of Bacterial | 49 |
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Acad Acta activity addition amino acid amount appears bacteria bacteriophages bases binding Biochem Biol Biophys biosynthesis bond bound catalyzed cell chain Chem chromosome coli complex components compounds contain cytoplasmic dependant direction DNA polymerase DNA synthesis double electron enzyme evidence example experiments extracts factors fatty acid fixation formation function gene genetic glucose growing growth incorporated inducer inhibited initiation involved isolated labelled lipid mechanism membrane molecule mutants Natl Nature nitrogen nitrogenase nucleotides observed occurs operator operon organisms oxidation peptide phosphate poly polypeptide presence Proc protein purified reaction reduction region regulation replication repression repressor residues ribosomes role sequence shown similar single specific step strand structure studies substrates subunits suggested sulphur synthesis synthetase Table template transcription transfer tRNA various vitro vivo wall