Abstract

A series of 16 analogs of 5'-deoxy-5'-adenosylcobalamin (adenosylcobalamin) were examined for their effects on the diol dehydrase system of Klebsiella pneumoniae (Aerobacter Aerogenes). Four analogs, ara-adenosyl-, aristeromycyl-, 3-isoadenosyl-, and nebularylcobalamin, were able to function as coenzymes in the diol dehydrase reaction, coenzyme activity decreasing in that order. Like the native holoenzyme, complexes of the enzyme with these four analogs show a cob(II)alamin-like absorption peak or shoulder in the presence of 1,2-propanediol. Analogs containing hypoxanthine, cytosine, or benzimidazole do not function as coenzymes, but are weak competitive inhibitors in the presence of adenosylcobalamin. Analogs in which the D-ribosyl moiety is replaced by L-ribose or by an alkyl chain of 2 to 6 carbons are inactive as coenzymes, but act as competitive inhibitors with extremely high affinity for the apoenzyme. Complexes with the inactive analogs showed visible spectra similar to those of the corresponding free cobalamins. Upon anaerobic photolysis and subsequent aeration, complexes with the first group of inactive analogs produced unusually stabilized cob(II)alamin, while complexes with the second group of inactive analogs were readily photolyzed to a hydroxocobalamin-enzyme complex. Complexes with adeninylpentyl- and L-adenosylcobalamin were stable to light under the same conditions. These findings suggest that both the ribose and the adenine moiety of the nucleoside participate in enzyme-coenzyme interaction, involving not only the binding to the apoenzyme but also the activation of the carbon-cobalt bond.

Highlights

  • A series of 16 analogs of 5’-deoxy-5’-adenosylcobalamin were examined for their effects on the diol dehydrase system of Klebsiella pneumoniae (Aerobacter aerogenes)

  • Isoadenosyl, and nebularylcobalamin, were able to function as coenzymes in the diol dehydrase reaction, coenzyme activity decreasing in that order

  • Several analogs of adenosylcobalamin modified in the sugar or base moiety of the nucleoside ligand have been synthesized and examined for their effects on reactions catalyzed by ribonucleotide reductase ofLactobaciLlus leichmannii

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Summary

PROCEDURES

Materials-The coenzyme analogs used in this studv were prepared as described before [17]. The purity of these analogs was established by paper chromatography using water-saturated set-butyl alcohol as the solvent system. Crystalline adenosylcobalamin and cyanocobalamin were obtained from Glaxo Research Ltd. Greenf&d, U. K. Methylcobalamin was a generous gift from Eisai Co., Ltd., Tokyo, Japan. All other chemicals were reagent made commercial predicts and were used without further purification. The apoenzyme of dial dehydrase was purified from cells ofKlebsiella pneumoniae (Aerobacter aerogenes) ATCC 8724 grown in the glycerol-1,2-. Propanediol medium [23], according to the newly developed purification procedure.’

OH OH OH OH OH OH OH OH
Protein concentration was determined either by the method of
RESULTS
TABLE I of adenosylcobakmtin and its analogs dehydrase system in dial
Relative coenzyme activity
Znhibition of diol dehydrase reaction by inactive analogs
Type of inhibition
DISCUSSION
Bv KCN
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