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Melanization of Candida auris Is Associated with Alteration of Extracellular pH
Daniel F Q Smith1, Nathan J Mudrak1,2, Daniel Zamith-Miranda3,4
1W. Harry Feinstone Department of Molecular Microbiology and Immunology, The Johns Hopkins Bloomberg School of Public Health, Baltimore, MD 21205, USA.
Abstract:
Candida auris is a recently emerged global fungal pathogen, which causes life-threatening infections, often in healthcare settings. C. auris infections are worrisome because the fungus is often resistant to multiple antifungal drug classes. Furthermore, C. auris forms durable and difficult to remove biofilms. Due to the relatively recent, resilient, and resistant nature of C. auris, we investigated whether it produces the common fungal virulence factor melanin. Melanin is a black-brown pigment typically produced following enzymatic oxidation of aromatic precursors, which promotes fungal virulence through oxidative stress resistance, mammalian immune response evasion, and antifungal peptide and pharmaceutical inactivation. We found that certain strains of C. auris oxidized L-DOPA and catecholamines into melanin. Melanization occurred extracellularly in a process mediated by alkalinization of the extracellular environment, resulting in granule-like structures that adhere to the fungus' external surface. C. auris had relatively high cell surface hydrophobicity, but there was no correlation between hydrophobicity and melanization. Melanin protected the fungus from oxidative damage, but we did not observe a protective role during infection of macrophages or Galleria mellonella larvae. In summary, C. auris alkalinizes the extracellular medium, which promotes the non-enzymatic oxidation of L-DOPA to melanin that attaches to its surface, thus illustrating a novel mechanism for fungal melanization.
Insights
Certain strains of Candida auris produce melanin, a pigment that adheres to the fungal surface. This novel melanization mechanism may contribute to the pathogen
Area of Science:
- Mycology
- Medical Mycology
- Fungal Pathogenesis
Background:
- Candida auris is an emerging global fungal pathogen causing severe infections.
- C. auris exhibits resistance to multiple antifungal drugs and forms resilient biofilms.
- Melanin is a known fungal virulence factor enhancing resistance and immune evasion.
Purpose of the Study:
- To investigate melanin production in Candida auris.
- To elucidate the mechanism and role of melanin in C. auris virulence.
Main Methods:
- Assessed melanin production using L-DOPA and catecholamines.
- Analyzed melanization process via extracellular pH.
- Evaluated melanin's role in oxidative stress and host infection models (macrophages, Galleria mellonella).
Main Results:
- Certain C. auris strains oxidized L-DOPA and catecholamines to melanin.
- Melanization occurred extracellularly, mediated by alkalinization, forming surface-adherent granules.
- Melanin conferred resistance to oxidative stress but not during macrophage or G. mellonella infection.
- No correlation found between cell surface hydrophobicity and melanization.
Conclusions:
- Candida auris utilizes a novel non-enzymatic mechanism for melanin production.
- Extracellular alkalinization drives melanin formation and surface adherence in C. auris.
- Melanin's role in C. auris pathogenesis requires further investigation.

