Defining Critical Genes During Spherule Remodeling and Endospore Development in the Fungal Pathogen, Coccidioides

H L Mead1, C C Roe1, E A Higgins Keppler2,3

  • 1Pathogen and Microbiome Institute, Northern Arizona University, Flagstaff AZ, United States.

Insights

Coccidioides fungal infections are a significant health concern. This study identified key genes and metabolic differences in wild-type Coccidioides posadasii, crucial for understanding and potentially treating infections.

Area of Science:

  • Mycology and Infectious Diseases
  • Molecular Biology and Genomics
  • Biochemistry and Metabolomics

Background:

  • Coccidioides immitis and C. posadasii are dimorphic fungi endemic to the Americas, causing significant respiratory infections in the US.
  • The parasitic spherule stage, critical for Coccidioides infection, involves specialized structures and molecular mechanisms that are poorly understood.
  • A previously developed attenuated C. posadasii mutant (Δcts2/Δard1/Δcts3) lacks chitinase genes and fails to complete endospore development, hindering its lifecycle.

Purpose of the Study:

  • To identify molecular pathways active in wild-type Coccidioides posadasii during spherule remodeling and endospore formation.
  • To understand how the deletion of chitinase genes in the mutant strain affects these critical developmental processes.
  • To generate a list of key genes and metabolic activities involved in Coccidioides endospore development and spherule rupture.

Main Methods:

  • Comparative transcriptome analysis using RNA sequencing (RNA-Seq) of wild-type C. posadasii C735 and the Δcts2/Δard1/Δcts3 mutant.
  • Bioinformatic analysis of RNA-Seq data, including read alignment with TOPHAT2 and differential expression analysis with Cufflinks.
  • Volatile metabolome analysis using solid-phase microextraction (SPME) and comprehensive two-dimensional gas chromatography-time-of-flight mass spectrometry (GC × GC-TOFMS).

Main Results:

  • Approximately 280 significantly differentially regulated transcripts were identified between the wild-type and mutant strains.
  • Fourteen of the differentially regulated genes were specific to the Coccidioides genus, potentially playing roles in endospore development.
  • Significant differences in metabolite production and consumption were observed, with the mutant exhibiting increased nutrient scavenging.

Conclusions:

  • This study provides the first targeted list of key genes active during Coccidioides endospore formation and spherule remodeling.
  • The findings highlight the impact of chitinase gene deletion on Coccidioides parasitic development and host interaction.
  • The integrated transcriptomic and metabolomic approach defines potential targets for future functional assays and therapeutic development against Coccidioidomycosis.

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