Related Experiment Video
Updated: Jun 14, 2026

Live Imaging of Antifungal Activity by Human Primary Neutrophils and Monocytes in Response to A. fumigatus
Published on: April 19, 2017
Aspergillus fumigatus cytochrome c impacts conidial survival during sterilizing immunity
Abstract:
Invasive pulmonary aspergillosis (IPA) is a life-threatening infection caused by species in the ubiquitous fungal genus Aspergillus . While leukocyte-generated reactive oxygen species (ROS) are critical for the clearance of fungal conidia from the lung and resistance to IPA, the processes that govern ROS-dependent fungal cell death remain poorly defined. Using a flow cytometric approach that monitors two independent cell death markers, an endogenous histone H2A:mRFP nuclear integrity reporter and Sytox Blue cell impermeable (live/dead) stain, we observed that loss of A. fumigatus cytochrome c ( cycA ) results in reduced susceptibility to cell death from hydrogen peroxide (H 2 O 2 ) treatment. Consistent with these observations in vitro , loss of cycA confers resistance to both NADPH-oxidase -dependent and -independent killing by host leukocytes. Fungal ROS resistance is partly mediated in part by Bir1, a homolog to survivin in humans, as Bir1 overexpression results in decreased ROS-induced conidial cell death and reduced killing by innate immune cells in vivo . We further report that overexpression of the Bir1 N-terminal BIR domain in A. fumigatus conidia results in altered expression of metabolic genes that functionally converge on mitochondrial function and cytochrome c ( cycA ) activity. Together, these studies demonstrate that cycA in A. fumigatus contributes to cell death responses that are induced by exogenous H 2 O 2 and by host leukocytes.
Importance:
Aspergillus fumigatus can cause a life-threatening infection known as invasive pulmonary aspergillosis (IPA), which is marked by fungus-attributable mortality rates of 20%-30%. Individuals at risk of IPA harbor genetic mutations or incur pharmacologic defects that impair myeloid cell numbers and/or function, exemplified by bone marrow transplant recipients, patients that receive corticosteroid therapy, or patients with Chronic Granulomatous Disease (CGD). However, treatments for Aspergillus infections remains limited, and resistance to the few existing drug classes is emerging. Recently, the World Health Organization (WHO) classified A. fumigatus as a critical priority fungal pathogen. Our research identifies an important aspect of fungal biology that impacts susceptibility to leukocyte killing. Furthering our understanding of mechanisms that mediate the outcome of fungal-leukocyte interactions will increase our understanding of both the underlying fungal biology governing cell death and innate immune evasion strategies utilized during mammalian infection pathogenesis. Consequently, our studies are a critical step toward leveraging these mechanisms for novel therapeutic advances.
Insights
Invasive pulmonary aspergillosis resistance in Aspergillus fumigatus is linked to cytochrome c (cycA) and Bir1. Loss of cycA reduces susceptibility to reactive oxygen species (ROS) and leukocyte killing, impacting fungal cell death.
Area of Science:
- Mycology
- Immunology
- Cell Biology
Background:
- Invasive pulmonary aspergillosis (IPA) is a severe fungal infection with high mortality rates.
- Limited treatment options and emerging drug resistance make Aspergillus fumigatus a critical priority pathogen.
- Understanding fungal resistance mechanisms to host immune cells is crucial for developing novel therapies.
Approach:
- Utilized flow cytometry with dual cell death markers to assess Aspergillus fumigatus viability.
- Investigated the role of cytochrome c (cycA) and Bir1 in fungal resistance to reactive oxygen species (ROS) and leukocyte killing.
- Examined the impact of Bir1 overexpression on gene expression, focusing on mitochondrial function and cycA activity.
Key Points:
- Loss of Aspergillus fumigatus cycA confers resistance to hydrogen peroxide and host leukocyte killing.
- Bir1 overexpression decreases ROS-induced cell death and enhances resistance to innate immune cells.
- Altered metabolic gene expression, converging on mitochondrial function, was observed upon Bir1 BIR domain overexpression.
Conclusions:
- cycA in Aspergillus fumigatus plays a significant role in mediating cell death responses to exogenous ROS and host leukocytes.
- Fungal resistance mechanisms involving cycA and Bir1 are critical for innate immune evasion during IPA.
- These findings provide insights into fungal biology and potential therapeutic targets for aspergillosis.
More Related Videos
09:43Measuring Phagocytosis of Aspergillus fumigatus Conidia by Human Leukocytes using Flow Cytometry
Published on: December 7, 2019
15:01Confocal Laser Scanning Microscopy-Based Quantitative Analysis of Aspergillus fumigatus Conidia Distribution in Whole-Mount Optically Cleared Mouse Lung
Published on: September 18, 2021
Related Concept Videos
Cryptococcal Meningitis
Antifungal Agents