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Updated: Oct 20, 2025

Small-Scale Plasma Membrane Preparation for the Analysis of Candida albicans Cdr1-mGFPHis
Published on: June 13, 2021
Opportunistic yeast pathogen Candida spp.: Secreted and membrane-bound virulence factors
Si Jie Lim1,2, Mohd Shukuri Mohamad Ali1,2,3, Suriana Sabri2,4
1Enzyme Technology and X-ray Crystallography Laboratory, VacBio 5, Institute of Bioscience, Universiti Putra Malaysia, 43400 UPM Serdang, Selangor, Malaysia.
Abstract:
Candidiasis is a fungal infection caused by Candida spp. especially Candida albicans, C. glabrata, C. parapsilosis and C. tropicalis. Although the medicinal therapeutic strategies have rapidly improved, the mortality rate as candidiasis has continuously increased. The secreted and membrane-bound virulence factors (VFs) are responsible for fungal invasion, damage and translocation through the host enterocytes besides the evasion from host immune system. VFs such as agglutinin-like sequences (Als), heat shock protein 70, phospholipases, secreted aspartyl proteinases (Sap), lipases, enolases and phytases are mostly hydrolases which degrade or interact with the enterocyte membrane components. Candidalysin, however, acts as a peptide toxin to induce necrotic cell lysis. To date, structural studies of the VFs remain underexplored, hindering their functional analyses. Among the VFs, only Sap and Als have their structures deposited in Protein Data Bank (PDB). Therefore, this review scrutinizes the mechanisms of these VFs by discussing the VF-deficient studies of several Candida spp. and their abilities to produce these VFs. Nonetheless, their latest reported sequential and structural analyses are discussed to impart a wider perception of the host-pathogen interactions and potential vaccine or antifungal drug targets. This review signifies that more VFs structural investigations and mining in the emerging Candida spp. are required to decipher their pathogenicity and virulence mechanisms compared to the prominent C. albicans.
Lay Summary:
Candida virulence factors (VFs) including mainly enzymes and proteins play vital roles in breaching the human intestinal barrier and causing deadly invasive candidiasis. Limited VFs' structural studies hinder deeper comprehension of their mechanisms and thus the design of vaccines and antifungal drugs against fungal infections.
Insights
Candida virulence factors (VFs) are key to invasive candidiasis. Understanding their structures is crucial for developing new antifungal drugs and vaccines against this deadly fungal infection.
Area of Science:
- Mycology
- Infectious Diseases
- Structural Biology
Background:
- Candidiasis, caused by Candida species, has a rising mortality rate despite improved therapies.
- Virulence factors (VFs) enable Candida to invade, damage host tissues, and evade the immune system.
- Limited structural data on VFs impedes understanding their function and developing targeted treatments.
Purpose of the Study:
- To review the mechanisms of Candida virulence factors (VFs).
- To discuss the latest sequential and structural analyses of VFs.
- To highlight the need for more structural investigations of VFs in emerging Candida species.
Main Methods:
- Review of VF-deficient studies in various Candida species.
- Analysis of published sequential and structural data of VFs.
- Examination of VFs' roles in host-pathogen interactions.
Main Results:
- VFs like Sap and Als have deposited structures, but many remain unexplored.
- VFs are primarily hydrolases degrading host cell components, except candidalysin, a lytic peptide toxin.
- VF-deficient studies reveal their importance in fungal pathogenicity.
Conclusions:
- Structural elucidation of VFs is essential for understanding candidiasis pathogenesis.
- Further research into VFs, especially in less-studied Candida species, is needed.
- Targeting VFs offers potential for novel antifungal drug and vaccine development.
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