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Updated: Dec 23, 2025

Measurement of Heme Synthesis Levels in Mammalian Cells
Published on: July 9, 2015
Human Serum Albumin Facilitates Heme-Iron Utilization by Fungi
Mariel Pinsky1, Udita Roy1, Shilat Moshe1
1Department of Molecular Microbiology, B. Rappaport Faculty of Medicine, Technion-I.I.T. and the Rappaport Institute for Research in the Medical Sciences, Haifa, Israel.
Abstract:
A large portion of biological iron is found in the form of an iron-protoporphyrin IX complex, or heme. In the human host environment, which is exceptionally poor in free iron, heme iron, particularly from hemoglobin, constitutes a major source of iron for invading microbial pathogens. Several fungi were shown to utilize free heme, and Candida albicans, a major opportunistic pathogen, is able both to capture free heme and to extract heme from hemoglobin using a network of extracellular hemophores. Human serum albumin (HSA) is the most abundant host heme-scavenging protein. Tight binding of heme by HSA restricts its toxic chemical reactivity and could diminish its availability as an iron source for pathogenic microbes. We found, however, that rather than inhibiting heme utilization, HSA greatly increases availability of heme as an iron source for C. albicans and other fungi. In contrast, hemopexin, a low-abundance but high-affinity heme-scavenging serum protein, does inhibit heme utilization by C. albicans However, inhibition by hemopexin is mitigated in the presence of HSA. Utilization of albumin-bound heme requires the same hemophore cascade as that which mediates hemoglobin-iron utilization. Accordingly, we found that the C. albicans hemophores are able to extract heme bound to HSA in vitro Since many common drugs are known to bind to HSA, we tested whether they could interfere with heme-iron utilization. We show that utilization of albumin-bound heme by C. albicans can be inhibited by the anti-inflammatory drugs naproxen and salicylic acid.IMPORTANCE Heme constitutes a major iron source for microorganisms and particularly for pathogenic microbes; to overcome the iron scarcity in the animal host, many pathogenic bacteria and fungi have developed systems to extract and take up heme from host proteins such as hemoglobin. Microbial heme uptake mechanisms are usually studied using growth media containing free heme or hemoglobin as a sole iron source. However, the animal host contains heme-scavenging proteins that could prevent this uptake. In the human host in particular, the most abundant serum heme-binding protein is albumin. Surprisingly, however, we found that in the case of fungi of the Candida species family, albumin promoted rather than prevented heme utilization. Albumin thus constitutes a human-specific factor that can affect heme-iron utilization and could serve as target for preventing heme-iron utilization by fungal pathogens. As a proof of principle, we identify two drugs that can inhibit albumin-stimulated heme utilization.
Insights
Human serum albumin (HSA) surprisingly enhances fungal iron acquisition from heme, contrary to expectations. Certain drugs, like naproxen and salicylic acid, can block this albumin-mediated heme utilization by Candida albicans.
Area of Science:
- Microbiology
- Mycology
- Host-pathogen interactions
Background:
- Iron is essential for microbial growth, and heme is a major iron source in hosts.
- Pathogenic fungi like Candida albicans scavenge heme from host proteins such as hemoglobin.
- Host heme-binding proteins, like human serum albumin (HSA), are thought to limit iron availability.
Purpose of the Study:
- To investigate the role of HSA in heme iron utilization by Candida albicans.
- To determine if HSA affects the availability of heme as an iron source for fungal pathogens.
- To identify potential therapeutic strategies to inhibit fungal heme utilization.
Main Methods:
- In vitro experiments using purified heme, HSA, and hemopexin.
- Fungal growth assays with Candida albicans utilizing different heme sources.
- Testing the inhibitory effects of drugs on albumin-bound heme utilization.
Main Results:
- HSA significantly increased heme iron availability for C. albicans and other fungi, contrary to its expected scavenging role.
- Hemopexin inhibited heme utilization, but this effect was reduced in the presence of HSA.
- C. albicans hemophores successfully extracted heme bound to HSA.
- Anti-inflammatory drugs, naproxen and salicylic acid, inhibited the utilization of albumin-bound heme.
Conclusions:
- HSA acts as a facilitator, not a barrier, for fungal heme iron uptake in the human host.
- Fungal hemophore systems are capable of extracting heme from HSA.
- HSA-bound heme represents a potential target for antifungal therapies, with drugs like naproxen and salicylic acid showing inhibitory effects.
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