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Detection of Invasive Pulmonary Aspergillosis in Haematological Malignancy Patients by using Lateral-flow Technology
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Towards a High-Affinity Peptidomimetic Targeting Proliferating Cell Nuclear Antigen from Aspergillus fumigatus
Bethiney C Vandborg1,2, Aimee J Horsfall1,3, Jordan L Pederick1,2
1Institute of Photonics and Advanced Sensing (IPAS), The University of Adelaide, Adelaide 5005, Australia.
Abstract:
Invasive fungal infections (IFIs) are prevalent in immunocompromised patients. Due to alarming levels of increasing resistance in clinical settings, new drugs targeting the major fungal pathogen Aspergillus fumigatus are required. Attractive drug targets are those involved in essential processes like DNA replication, such as proliferating cell nuclear antigens (PCNAs). PCNA has been previously studied in cancer research and presents a viable target for antifungals. Human PCNA interacts with the p21 protein, outcompeting binding proteins to halt DNA replication. The affinity of p21 for hPCNA has been shown to outcompete other associating proteins, presenting an attractive scaffold for peptidomimetic design. p21 has no A. fumigatus homolog to our knowledge, yet our group has previously demonstrated that human p21 can interact with A. fumigatus PCNA (afumPCNA). This suggests that a p21-based inhibitor could be designed to outcompete the native binding partners of afumPCNA to inhibit fungal growth. Here, we present an investigation of extensive structure-activity relationships between designed p21-based peptides and afumPCNA and the first crystal structure of a p21 peptide bound to afumPCNA, demonstrating that the A. fumigatus replication model uses a PIP-box sequence as the method for binding to afumPCNA. These results inform the new optimized secondary structure design of a potential peptidomimetic inhibitor of afumPCNA.
Insights
New antifungal drugs are needed to combat resistant fungal infections. Researchers designed p21-based peptides targeting proliferating cell nuclear antigen (PCNA) in Aspergillus fumigatus, showing potential for new antifungal therapies.
Area of Science:
- Medical Mycology
- Structural Biology
- Drug Discovery
Background:
- Invasive fungal infections (IFIs) pose a significant threat to immunocompromised individuals.
- Increasing antifungal resistance necessitates novel therapeutic strategies.
- Proliferating cell nuclear antigen (PCNA) is a validated target for inhibiting DNA replication in fungi.
Purpose of the Study:
- To investigate structure-activity relationships of p21-based peptides targeting Aspergillus fumigatus PCNA (afumPCNA).
- To determine the crystal structure of a p21 peptide bound to afumPCNA.
- To inform the design of novel peptidomimetic inhibitors against fungal pathogens.
Main Methods:
- Structure-activity relationship (SAR) studies of designed p21-based peptides.
- X-ray crystallography to obtain the afumPCNA-peptide complex structure.
- Analysis of protein-protein interactions and binding mechanisms.
Main Results:
- Extensive SAR data was generated for p21-based peptides and afumPCNA.
- The first crystal structure of a p21 peptide bound to afumPCNA was determined.
- The study revealed that afumPCNA utilizes a PIP-box sequence for binding, similar to human PCNA.
Conclusions:
- Human p21-based peptides can interact with afumPCNA, offering a potential therapeutic avenue.
- The elucidated binding mechanism provides a basis for designing targeted antifungal peptidomimetics.
- This research paves the way for developing new treatments against resistant fungal infections.
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