Javascript must be enabled to continue!
Global proteomic analysis of Cryptococcus neoformans clinical strains reveals significant differences between latent and lethal infection
View through CrossRef
ABSTRACT
To predict the outcomes of disseminated fungal disease, a deeper understanding of host-pathogen interactions at the site of infection is needed to identify targets for clinical intervention and diagnostic development.
Cryptococcus neoformans
is the causative agent of cryptococcosis, the largest infectious killer of individuals living with HIV. Cryptococcal infection begins in the lungs, with loss of immunological control leading to disseminated central nervous system disease and death. Using advanced mass spectrometry-based proteomic techniques,
in vivo
infection models, and patient-derived clinical strains, we explored the proteomic profiles of
C. neoformans
infections related to differences in strain virulence. Our findings reveal that non-lethal latent infection produces a proteomic response that differs significantly from the response caused by lethal infections, and that the proteomic profiles of typical and hypervirulent infections are markedly similar despite differences in time-to-death. Overall, the mouse pulmonary proteomic response in latent infection is defined by enrichment of proteins and pathways involved in extracellular matrix organization, cell adhesion, and structural changes, while the lethal infection is dominated by host-defense, translation, and metabolic processes. These results provide clinically relevant information on how infections caused by different
Cryptococcus
strains may produce significantly different outcomes. We also identified abundant fungal proteins that could be future drug targets in latent and lethal cryptococcal infection.
IMPORTANCE
Cryptococcus neoformans
is a fungal pathogen that causes substantial morbidity and mortality in immunocompromised individuals. The initial infection begins in the lungs after exposure to inhaled spores after which local immune cells respond by either killing or containing the fungal cells. Immunosuppression weakens the immune system and allows fungal cells in the lungs to escape through the circulatory system and invade the central nervous system and cause fatal disease. However, differences between fungal strains influence the severity of disease manifestation. Our group has previously described genetic differences that contribute to strain-specific disease manifestations. In this study, we expanded our analysis to investigate the proteomic differences between strains of
C. neoformans
to identify candidate proteins and pathways that contribute to disease manifestation. We found that latent infection differs significantly from lethal disease from both the host and pathogen proteomic perspectives and have identified several fungal protein targets for future study.
Title: Global proteomic analysis of
Cryptococcus neoformans
clinical strains reveals significant differences between latent and lethal infection
Description:
ABSTRACT
To predict the outcomes of disseminated fungal disease, a deeper understanding of host-pathogen interactions at the site of infection is needed to identify targets for clinical intervention and diagnostic development.
Cryptococcus neoformans
is the causative agent of cryptococcosis, the largest infectious killer of individuals living with HIV.
Cryptococcal infection begins in the lungs, with loss of immunological control leading to disseminated central nervous system disease and death.
Using advanced mass spectrometry-based proteomic techniques,
in vivo
infection models, and patient-derived clinical strains, we explored the proteomic profiles of
C.
neoformans
infections related to differences in strain virulence.
Our findings reveal that non-lethal latent infection produces a proteomic response that differs significantly from the response caused by lethal infections, and that the proteomic profiles of typical and hypervirulent infections are markedly similar despite differences in time-to-death.
Overall, the mouse pulmonary proteomic response in latent infection is defined by enrichment of proteins and pathways involved in extracellular matrix organization, cell adhesion, and structural changes, while the lethal infection is dominated by host-defense, translation, and metabolic processes.
These results provide clinically relevant information on how infections caused by different
Cryptococcus
strains may produce significantly different outcomes.
We also identified abundant fungal proteins that could be future drug targets in latent and lethal cryptococcal infection.
IMPORTANCE
Cryptococcus neoformans
is a fungal pathogen that causes substantial morbidity and mortality in immunocompromised individuals.
The initial infection begins in the lungs after exposure to inhaled spores after which local immune cells respond by either killing or containing the fungal cells.
Immunosuppression weakens the immune system and allows fungal cells in the lungs to escape through the circulatory system and invade the central nervous system and cause fatal disease.
However, differences between fungal strains influence the severity of disease manifestation.
Our group has previously described genetic differences that contribute to strain-specific disease manifestations.
In this study, we expanded our analysis to investigate the proteomic differences between strains of
C.
neoformans
to identify candidate proteins and pathways that contribute to disease manifestation.
We found that latent infection differs significantly from lethal disease from both the host and pathogen proteomic perspectives and have identified several fungal protein targets for future study.
Related Results
Global proteomic analysis of
Cryptococcus neoformans
clinical strains reveals significant differences between latent and lethal infection
Global proteomic analysis of
Cryptococcus neoformans
clinical strains reveals significant differences between latent and lethal infection
ABSTRACT
To predict the outcomes of disseminated fungal disease, a deeper understanding of host-p...
Cryptococcus neoformans and Other Opportunistic Cryptococcus Species in Pigeon Dropping in Saudi Arabia: Identification and Characterization by DNA Sequencing
Cryptococcus neoformans and Other Opportunistic Cryptococcus Species in Pigeon Dropping in Saudi Arabia: Identification and Characterization by DNA Sequencing
The prevalent variants of Cryptococcus neoformans, and other Cryptococcus species in pigeon excreta in Western Region of Saudi Arabia were studied. Ninety pigeon dropping samples w...
Murine natural killer cells are fungicidal to Cryptococcus neoformans
Murine natural killer cells are fungicidal to Cryptococcus neoformans
Murine natural killer (NK) cells have been shown to bind to and inhibit the growth of Cryptococcus neoformans in vitro and to contribute to clearance of the organism in vivo. Howev...
Effects of combination of Cryptococcus neoformans and IFN-γ, IL-4 or IL-27 on human bronchial epithelial cells
Effects of combination of Cryptococcus neoformans and IFN-γ, IL-4 or IL-27 on human bronchial epithelial cells
Abstract
The innate immune response and cytokine milieu in the airway mucosa triggered by bronchial epithelial cells are crucial for the establishment or protection of cryp...
Genetic diversity of Cryptococcus Neoformans isolates from pigeon (Columba Livia) droppings in Bangkok
Genetic diversity of Cryptococcus Neoformans isolates from pigeon (Columba Livia) droppings in Bangkok
This study was designed to differentiate C. neoformans isolates from pigeon droppings from Bangkok area by Random Amplified Polymorphic DNA (RAPD) using M13 as a single primer. Out...
การสำรวจและประเมินประสิทธิภาพของน้ำยาฆ่าเชื้อต่อ Cryptococcus neoformansจากสิ่งขับถ่ายนกพิราบ (Columba livia) ในกรุงเทพมหานคร
การสำรวจและประเมินประสิทธิภาพของน้ำยาฆ่าเชื้อต่อ Cryptococcus neoformansจากสิ่งขับถ่ายนกพิราบ (Columba livia) ในกรุงเทพมหานคร
Cryptococcus neoformans เป็นเชื้อราฉวยโอกาส ที่เป็นสาเหตุของการก่อโรค cryptococcosis ทั้งในคนและสัตว์ โดยเฉพาะผู้ป่วยภาวะภูมิคุ้มกันบกพร่อง จากการแพร่กระจายของเชื้อ C. neoformans พ...
Aislamiento de Cryptococcus neoformans y Salmonella spp. en excretas de palomas domésticas (Columba livia) de la Basílica Catedral de Lima y Convento de San Francisco Lima, Perú
Aislamiento de Cryptococcus neoformans y Salmonella spp. en excretas de palomas domésticas (Columba livia) de la Basílica Catedral de Lima y Convento de San Francisco Lima, Perú
Las palomas urbanas (Columba livia) son portadoras de diversos agentes patógenos de importancia zoonótica para el hombre, entre ellas Salmonella spp. y Cryptococcus neoformans; los...
Cryptococcus
Cryptococcus
This chapter analyzes Cryptococcus neoformans, which is found worldwide as a soil organism and thought to be transmitted by inhalation and often causes disease in patients with abn...

