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R Wurm

Publications and source records attributed to R Wurm.

41 records · Page 3Linked to original sources

On the biosynthesis of 5-methoxybenzimidazole. Precursor-function of 5-hydroxybenzimidazole, benzimidazole and riboflavin.

1. In Clostridium thermoaceticum 5-hydroxybenzimidazole is methylated to 5-methoxybenz-imidaxole and transformed to 5-methoxybenzimidazolylcobamide. 5-Hydroxybenzimidazolycobamide is also methylated to 5-methoxybenzimidazolylcobamide. These results indicate a possible precursor function of 5-hydroxybenzimidazole in the biosynthesis of 5-methoxybenzimidazole. 2. The same microorganism uses benzimidazole to form benzimidazolylcobamide. This or externally added benzimidazolylcobamide, although taken up by the cells, is not further transformed (i.e. hydroxylated and methylated to 5-methoxybenzimdazolylcobamidel). This excludes a precursor function of benzimidazole in the biosynthesis of 5-methoxybenzimidazole. 3. Contrary to the biosynthesis of 5,6-dimethylbenzimidazole, 5-methoxybenzimidazole is not formed from riboflavin, but riboflavin inhibits the growth and the production of 5-methoxybenzimidazolylcobamide in Clostridium thermoaceticum. A tentative scheme for the biosynthesis of 5-methoxybenzimidazole via a riboflavin analog is discussed.

Benzimidazoles↗

Nonenzymatic transformation of riboflavin into 5,6-dimethylbenzimidazole.

Riboflavin, the biosynthetic precursor of the 5,6-dimethylbenzimidazole moiety of vitamin B12, is transformed non-enzymatically into 5,6-dimethylbenzimidazole in small yield on treatment with 1 N or 5 N NaOH at 100 degrees C. Besides 5,6-dimethylbenzimidazole 1,2-diamino-4,5-dimethylbenzene, 1,2-dihydro-6,7-dimethyl-2-keto-1-D-ribityl-3-quinoxaline carboxylic acid and N-1-D-ribitylamino-2-amino-4,5-dimethylbenzene can be detected. When [1 degree -14C]riboflavin is used the 5,6-dimethylbenzimidazole contains about 75 per cent of the specific radioactivity of riboflavin. N-1-D-ribityl-amino-2-amino-4,5-dimethylbenzene is transformed into 5,6-dimethylbenzimidazole more efficiently than riboflavin. Oxygen enhances the yield of 5,6-dimethylbenzimidazole and 1,2-diamino-4,5-dimethylbenzene from riboflavin as well as from N-1-D-ribitylamino-2-amino-4,5-dimethylbenzene. 1,2-diamino-4,5-dimethylbenzene reacts together with formaldehyde but not with formate to form 5,6-dimethylbenzimidazole under alkaline conditions at 100 degrees C. It is therefore suggested that the nonenzymatic reaction of riboflavin proceeds via N-1-D-ribitylamino-2-amino-4,5-dimethylbenzene and 1,2-diamino-4,5-dimethylbenzene, and that the latter reacts with formaldehyde preferably formed by oxidative degradation of C-1 degree of the ribitly side chain to form 5,6-dimethylbenzimidazole via its unstable imidazoline derivative. The possible relevance of these results for the enzymatic process is discussed.

Benzimidazoles↗