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Homodimericin A: A Complex Hexacyclic Fungal Metabolite.


ABSTRACT: Microbes sense and respond to their environment with small molecules, and discovering these molecules and identifying their functions informs chemistry, biology, and medicine. As part of a study of molecular exchanges between termite-associated actinobacteria and pathogenic fungi, we uncovered a remarkable fungal metabolite, homodimericin A, which is strongly upregulated by the bacterial metabolite bafilomycin C1. Homodimericin A is a hexacyclic polyketide with a carbon backbone containing eight contiguous stereogenic carbons in a C20 hexacyclic core. Only half of its carbon atoms have an attached hydrogen, which presented a significant challenge for NMR-based structural analysis. In spite of its microbial production and rich stereochemistry, homodimericin A occurs naturally as a racemic mixture. A plausible nonenzymatic reaction cascade leading from two identical achiral monomers to homodimericin A is presented, and homodimericin A's formation by this path, a six-electron oxidation, could be a response to oxidative stress triggered by bafilomycin C1.

SUBMITTER: Mevers E 

PROVIDER: S-EPMC5533454 | biostudies-literature | 2016 Sep

REPOSITORIES: biostudies-literature

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Homodimericin A: A Complex Hexacyclic Fungal Metabolite.

Mevers Emily E   Saurí Josep J   Liu Yizhou Y   Moser Arvin A   Ramadhar Timothy R TR   Varlan Maria M   Williamson R Thomas RT   Martin Gary E GE   Clardy Jon J  

Journal of the American Chemical Society 20160916 38


Microbes sense and respond to their environment with small molecules, and discovering these molecules and identifying their functions informs chemistry, biology, and medicine. As part of a study of molecular exchanges between termite-associated actinobacteria and pathogenic fungi, we uncovered a remarkable fungal metabolite, homodimericin A, which is strongly upregulated by the bacterial metabolite bafilomycin C1. Homodimericin A is a hexacyclic polyketide with a carbon backbone containing eight  ...[more]

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