Ether bridge formation in loline alkaloid biosynthesis.
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Abstract |
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Lolines are potent insecticidal agents produced by endophytic fungi of cool-season grasses. These alkaloids are composed of a pyrrolizidine ring system and an uncommon ether bridge linking carbons 2 and 7. Previous results indicated that 1-aminopyrrolizidine was a pathway intermediate. We used RNA interference to knock down expression of lolO, resulting in the accumulation of an alkaloid identified as exo-1-acetamidopyrrolizidine based on high-resolution MS and NMR. Genomes of endophytes differing in alkaloid profiles were sequenced, revealing that those with mutated lolO accumulated exo-1-acetamidopyrrolizidine but no lolines. Heterologous expression of wild-type lolO complemented a lolO mutant, resulting in the production of N-acetylnorloline. These results indicated that the non-heme iron oxygenase, LolO, is required for ether bridge formation, probably through oxidation of exo-1-acetamidopyrrolizidine. |
Year of Publication |
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2014
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Journal |
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Phytochemistry
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Volume |
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98
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Number of Pages |
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60-8
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ISSN Number |
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0031-9422
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URL |
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https://linkinghub.elsevier.com/retrieve/pii/S0031-9422(13)00450-0
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DOI |
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10.1016/j.phytochem.2013.11.015
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Short Title |
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Phytochemistry
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