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Melanin and pyomelanin in Aspergillus fumigatus: from its genetics to host interaction
U Perez-Cuesta1, L Aparicio-Fernandez1, X Guruceaga1
1Fungal and Bacterial Biomics Research Group, Department of Immunology, Microbiology and Parasitology, Faculty of Science and Technology, University of the Basque Country (UPV/EHU), Leioa, Spain.
Abstract:
Aspergillus fumigatus is a worldwide-distributed saprophytic fungus and the major cause of invasive aspergillosis. This fungus can produce two types of melanin-dihydroxynaphthalene melanin (DHN-melanin) and pyomelanin. These pigments are considered important resistance mechanisms to stress, as well as virulence factors. The aim of this review is to present the current knowledge of the genetic basis and metabolic pathways of melanin production, their activation, function, and interaction with the host immune system. The DHN-melanin pathway is encoded in a cluster that includes six genes (abr1, abr2, ayg1, arp1, arp2, and pksP/alb1 genes) whose encoded proteins seem to be the origin of the pigment in endosomes. These vesicles are secreted and the pigment is subsequently located in the wall of the conidium beneath the rodlet layer. Unlike DHN-melanin, pyomelanin does not have its own biosynthetic pathway but is related to the activation of the L-tyrosine/L-phenylalanine degradation pathway that includes a cluster of six genes (hppD, hmgX, hmgA, fahA, maiA, and hmgR). Its production is due to the polymerization of homogentisic acid and is linked to conidial germination. Despite the knowledge gained in recent years, further studies will be necessary to confirm the pathways that produce these pigments and their role in the virulence mechanisms of A. fumigatus.
Insights
Aspergillus fumigatus produces two melanins, dihydroxynaphthalene melanin (DHN-melanin) and pyomelanin, which are crucial for fungal resistance and virulence. This review details their genetic pathways, activation, and immune interactions.
Area of Science:
- Mycology
- Biochemistry
- Immunology
Background:
- Aspergillus fumigatus is a ubiquitous fungus causing invasive aspergillosis.
- Melanins (DHN-melanin and pyomelanin) are key resistance and virulence factors in A. fumigatus.
Purpose of the Study:
- To review the genetic basis and metabolic pathways of melanin production in A. fumigatus.
- To explore melanin activation, function, and host immune system interactions.
Main Methods:
- Review of existing literature on A. fumigatus melanin biosynthesis.
- Analysis of genetic clusters and metabolic pathways involved in pigment production.
Main Results:
- DHN-melanin pathway involves six genes (abr1, abr2, ayg1, arp1, arp2, pksP/alb1) and is located in secreted vesicles within the conidial wall.
- Pyomelanin production is linked to L-tyrosine/L-phenylalanine degradation (hppD, hmgX, hmgA, fahA, maiA, hmgR) and conidial germination.
Conclusions:
- Significant progress in understanding melanin pathways, but further research is needed.
- Clarification of pigment production pathways and their role in A. fumigatus virulence is essential.
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