MFS multidrug transporters in pathogenic fungi: do they have real clinical impact?

Catarina Costa1, Paulo J Dias1, Isabel Sá-Correia1

  • 1Biological Sciences Research Group, Department of Bioengineering, Instituto Superior Técnico, IBB - Institute for Biotechnology and Bioengineering, Universidade de Lisboa Lisbon, Portugal.

Insights

Drug:H(+) Antiporter (DHA) transporters are crucial in fungal drug resistance. This review highlights their role in antifungal resistance and pathogen-host interactions, emphasizing the need for further characterization.

Area of Science:

  • Mycology
  • Molecular Biology
  • Antimicrobial Resistance

Background:

  • Opportunistic fungal infections are increasing due to immunocompromised populations.
  • Antifungal resistance, driven by multidrug efflux pumps like ABC and MFS, is a growing concern.
  • The role of the Drug:H(+) Antiporter (DHA) family within the MFS in antifungal resistance is understudied.

Purpose of the Study:

  • To review current knowledge on DHA transporters in fungi.
  • To summarize their role in antifungal drug resistance, mode of action, and phylogenetic relationships.
  • To discuss their clinical relevance in pathogenic fungi.

Main Methods:

  • Compilation of predicted DHA transporters in medically relevant fungal species.
  • Review of existing literature on characterized DHA transporters.
  • Analysis of DHA transporter roles in antifungal resistance and host-pathogen interactions.

Main Results:

  • Only 5% of predicted DHA transporters in key fungal pathogens have been characterized.
  • DHA transporters play a significant role in conferring antifungal drug resistance.
  • These transporters are implicated in pathogen-host interactions.

Conclusions:

  • A significant knowledge gap exists regarding fungal DHA transporters.
  • Systematic characterization of DHA multidrug efflux pumps is needed.
  • Understanding DHA transporters is crucial for developing new antifungal strategies and addressing clinical relevance.

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