Microevolution of Serial Clinical Isolates of Cryptococcus neoformans var. grubii and C. gattii

Yuan Chen1,2, Rhys A Farrer3, Charles Giamberardino1

  • 1Division of Infectious Diseases, Department of Medicine, Duke University Medical Center, Durham, North Carolina, USA.

Mbio
|March 9, 2017
PubMed

Insights

Cryptococcus meningitis relapse in patients is driven by microevolutionary genetic and phenotypic changes within the host. Comparative genomics of serial isolates reveals mechanisms of cryptococcal adaptation and antifungal resistance.

Area of Science:

  • Medical Mycology
  • Genomics
  • Infectious Diseases

Background:

  • Cryptococcus species cause life-threatening infections, particularly in immunocompromised individuals.
  • Recurrent cryptococcal meningitis poses a significant clinical challenge, with over 10% of patients relapsing despite antifungal treatment.
  • Understanding the microevolutionary changes within Cryptococcus during infection is crucial for improving patient outcomes.

Purpose of the Study:

  • To investigate the genetic and phenotypic alterations in serial Cryptococcus isolates from patients experiencing recurrent meningitis.
  • To identify mechanisms of cryptococcal adaptation and virulence enhancement within the host environment.
  • To explore potential genetic drivers of antifungal drug resistance.

Main Methods:

  • Comparative genomic analysis of incident and relapse Cryptococcus isolates from cerebrospinal fluid of 18 South African patients.
  • Assessment of phenotypic changes related to virulence, including growth at elevated temperatures, stress adaptation, and capsule production.
  • Evaluation of antifungal susceptibility, specifically to fluconazole.

Main Results:

  • Relapse isolates exhibited significant genetic and phenotypic changes compared to initial isolates, acquired during intra-host evolution.
  • Observed adaptations included enhanced virulence factors (e.g., thermotolerance, stress response, capsule production) and a remarkable amplification of the ERG11 gene, potentially conferring fluconazole resistance.
  • These microevolutionary changes highlight Cryptococcus's adaptability under antifungal and immune pressure.

Conclusions:

  • Comparative genomics of serial clinical isolates provides a powerful approach to understand pathogen adaptation and relapse.
  • The identified genetic and phenotypic changes in relapse isolates offer insights into cryptococcal virulence and antifungal resistance mechanisms.
  • This study suggests potential novel targets for improved diagnosis, therapy, and prognosis of recurrent cryptococcal meningitis.

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