Spotted Fever Group Rickettsia Trigger Species-Specific Alterations in Macrophage Proteome Signatures with Different

Pedro Curto1,2, Cátia Santa1,2, Luísa Cortes1,2

  • 1Center for Neuroscience and Cell Biology, University of Coimbra, Coimbra, Portugal.

Microbiology Spectrum
|December 22, 2021
PubMed

Insights

Mildly pathogenic Rickettsia species manipulate host macrophages differently, triggering distinct immune responses. Understanding these variations in Rickettsia parkeri, Rickettsia africae, and Rickettsia massiliae infections is key to deciphering rickettsial pathogenicity.

Area of Science:

  • Microbiology
  • Immunology
  • Proteomics

Background:

  • Pathogenicity differences among Rickettsia species are not fully understood, though macrophage permissiveness is a known virulence factor.
  • Mildly pathogenic Rickettsia can survive and replicate within macrophages, but their host cell manipulation strategies are unclear.
  • Investigating host responses to different Rickettsia species can reveal immune evasion mechanisms and pathogenicity differences.

Purpose of the Study:

  • To compare the proteomic alterations induced by three mildly pathogenic Rickettsia species (R. parkeri, R. africae, R. massiliae) in THP-1 macrophages.
  • To elucidate species-specific host responses and immune evasion strategies employed by these Rickettsia species.
  • To understand the nuances of macrophage-Rickettsia interactions and their role in rickettsial pathogenicity.

Main Methods:

  • Quantitative proteomics using sequential windowed data independent acquisition of the total high-resolution mass spectra with tandem mass spectrometry (SWATH-MS/MS).
  • Infection of THP-1 macrophages with Rickettsia parkeri, Rickettsia africae, and Rickettsia massiliae.
  • Analysis of host protein alterations, including type I interferon responses, RIG-I-like signaling, mRNA splicing, and protein translation.

Main Results:

  • All three Rickettsia species induced distinct proteome signatures in macrophages.
  • Infections significantly impacted type I interferon responses, RIG-I-like signaling, mRNA splicing, and protein translation.
  • Species-specific differences were observed in inflammatory responses, including beta interferon (IFN-β) and interleukin 1β (IL-1β) levels, and pyroptotic events.

Conclusions:

  • Mildly pathogenic Rickettsia species differentially manipulate host macrophages, leading to unique proteomic and immune profiles.
  • These findings highlight species-specific variations in immune evasion and inflammatory responses, contributing to the spectrum of rickettsial pathogenicity.
  • This study provides new insights into the complex interactions between Rickettsia and macrophages, crucial for understanding disease severity.