Role of the LolP cytochrome P450 monooxygenase in loline alkaloid biosynthesis.
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| Abstract | 
   :  
              The insecticidal loline alkaloids, produced by Neotyphodium uncinatum and related endophytes, are exo-1-aminopyrrolizidines with an ether bridge between C-2 and C-7. Loline alkaloids vary in methyl, acetyl, and formyl substituents on the 1-amine, which affect their biological activity. Enzymes for key loline biosynthesis steps are probably encoded by genes in the LOL cluster, which is duplicated in N. uncinatum, except for a large deletion in lolP2. The role of lolP1 was investigated by its replacement with a hygromycin B phosphotransferase gene. Compared to wild type N. uncinatum and an ectopic transformant, DeltalolP1 cultures had greatly elevated levels of N-methylloline (NML) and lacked N-formylloline (NFL). Complementation of DeltalolP1 with lolP1 under control of the Emericella nidulans trpC promoter restored NFL production. These results and the inferred sequence of LolP1 indicate that it is a cytochrome P450, catalyzing oxygenation of an N-methyl group in NML to the N-formyl group in NFL.  | 
        
| Year of Publication | 
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              2008 
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| Journal | 
   :  
              Fungal genetics and biology : FG & B 
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| Volume | 
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              45 
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| Issue | 
   :  
              9 
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| Number of Pages | 
   :  
              1307-14 
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| ISSN Number | 
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              1087-1845 
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| URL | 
   :  
              https://linkinghub.elsevier.com/retrieve/pii/S1087-1845(08)00112-6 
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| DOI | 
   :  
              10.1016/j.fgb.2008.07.001 
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| Short Title | 
   :  
              Fungal Genet Biol 
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