Clinical Persistence of Chlamydia trachomatis Sexually Transmitted Strains Involves Novel Mutations in the Functional

Naraporn Somboonna1, Noa Ziklo1, Thomas E Ferrin2

  • 1Center for Immunobiology and Vaccine Development, University of California San Francisco Benioff Children's Hospital Oakland Research Institute, Oakland, California, USA.

Mbio
|July 18, 2019
PubMed

Insights

Chlamydia trachomatis (Ct) can persist in the body due to mutations in its tryptophan synthesis pathway, previously only seen in eye infections. This discovery reveals a new survival strategy for this common sexually transmitted infection.

Area of Science:

  • Microbiology
  • Infectious Diseases
  • Genetics

Background:

  • Chlamydia trachomatis (Ct) persistence is a significant public health issue, often linked to tryptophan metabolism.
  • In vitro, Ct recovers from persistence by synthesizing tryptophan from indole using tryptophan synthase.
  • Mutations in the trpA gene of ocular Ct strains prevent tryptophan synthesis from indole.

Purpose of the Study:

  • To investigate the mechanisms of recurrent Chlamydia trachomatis infections in a patient despite antibiotic treatment.
  • To analyze the genetic and functional characteristics of serial Ct isolates from a persistent infection.
  • To understand the role of tryptophan operon mutations in in vivo Ct persistence.

Main Methods:

  • Genome sequencing of serial Ct isolates from clinical samples.
  • Transmission electron microscopy to visualize bacterial morphology.
  • Phenotypic and functional analysis of tryptophan synthesis capabilities.

Main Results:

  • All serial Ct isolates from the patient harbored identical trpA mutations, previously associated with ocular strains.
  • These isolates showed impaired tryptophan synthesis from indole and altered cell structures.
  • The mutations likely enabled long-term in vivo persistence, with infection resuming upon tryptophan availability.

Conclusions:

  • Emergent trpA mutations in urogenital Ct strains can lead to in vivo persistence, representing a novel host-pathogen adaptive strategy.
  • This finding expands our understanding of chlamydial persistence beyond in vitro models.
  • Further research is needed on the genetics, fitness, and pathogenesis of these mutant Ct strains.

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