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Analysis of the role of the A. niger aminolevulinic acid synthase (hemA) gene illustrates the difference between regulation of yeast and fungal heme and siroheme dependent pathways

Analysis of the role of the A. niger aminolevulinic acid synthase (hemA) gene illustrates the difference between regulation of yeast and fungal heme and siroheme dependent pathways

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To increase knowledge on haem biosynthesis in filamentous fungi like Aspergillus niger, pathway-specific gene expression in response to haem and haem intermediates was analysed. This analysis showed that iron, 5-aminolevulinic acid (ALA) and possibly haem control haem biosynthesis mostly via modulating expression of hemA [coding for 5-aminolevulinic acid synthase (ALAS)]. A hemA deletion mutant (?hemA) was constructed, which showed conditional lethality. Growth of ?hemA was supported on standard nitrate-containing media with ALA, but not by hemin. Growth of ?hemA could be sustained in the presence of hemin in combination with ammonium instead of nitrate as N-source. Our results suggest that a branch-off within the haem biosynthesis pathway required for sirohaem synthesis is responsible for lack of growth of ?hemA in media containing nitrate as sole N-source, because of the requirement of sirohaem for nitrate assimilation, as a cofactor of nitrite reductase. In contrast to the situation in Saccharomyces cerevisiae, cysteine, but not methionine, was found to further improve growth of ?hemA. These results demonstrate that A. niger can use exogenous hemin for its cellular processes. They also illustrate important differences in regulation of haem biosynthesis and in the role of haem and sirohaem in A. niger compared to S. cerevisiae.

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OrganisatieHAN University of Applied Sciences
AfdelingAcademie Toegepaste Biowetenschappen en Chemie
LectoraatBiodiscovery
Gepubliceerd inFEMS Microbiol Letters Hogeschool van Arnhem en Nijmegen, Vol. 335, Uitgave: 2, Pagina's: 104-112
Jaar2012
TypeArtikel
DOI10.1111/j.1574-6968.2012.02655.x
TaalOnbekend

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