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Tailoring enzymes involved in the biosynthesis of angucyclines contain latent context-dependent catalytic activities.


ABSTRACT: Comparison of homologous angucycline modification enzymes from five closely related Streptomyces pathways (pga, cab, jad, urd, lan) allowed us to deduce the biosynthetic steps responsible for the three alternative outcomes: gaudimycin C, dehydrorabelomycin, and 11-deoxylandomycinone. The C-12b-hydroxylated urdamycin and gaudimycin metabolites appear to be the ancestral representatives from which landomycins and jadomysins have evolved as a result of functional divergence of the ketoreductase LanV and hydroxylase JadH, respectively. Specifically, LanV has acquired affinity for an earlier biosynthetic intermediate resulting in a switch in biosynthetic order and lack of hydroxyls at C-4a and C-12b, whereas in JadH, C-4a/C-12b dehydration has evolved into an independent secondary function replacing C-12b hydroxylation. Importantly, the study reveals that many of the modification enzymes carry several alternative, hidden, or ancestral catalytic functions, which are strictly dependent on the biosynthetic context.

SUBMITTER: Patrikainen P 

PROVIDER: S-EPMC3361699 | biostudies-literature | 2012 May

REPOSITORIES: biostudies-literature

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Tailoring enzymes involved in the biosynthesis of angucyclines contain latent context-dependent catalytic activities.

Patrikainen Pekka P   Kallio Pauli P   Fan Keqiang K   Klika Karel D KD   Shaaban Khaled A KA   Mäntsälä Pekka P   Rohr Jürgen J   Yang Keqian K   Niemi Jarmo J   Metsä-Ketelä Mikko M  

Chemistry & biology 20120501 5


Comparison of homologous angucycline modification enzymes from five closely related Streptomyces pathways (pga, cab, jad, urd, lan) allowed us to deduce the biosynthetic steps responsible for the three alternative outcomes: gaudimycin C, dehydrorabelomycin, and 11-deoxylandomycinone. The C-12b-hydroxylated urdamycin and gaudimycin metabolites appear to be the ancestral representatives from which landomycins and jadomysins have evolved as a result of functional divergence of the ketoreductase Lan  ...[more]

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