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Metal-Limited Growth of Neisseria gonorrhoeae for Characterization of Metal-Responsive Genes and Metal Acquisition from Host Ligands
Published on: March 4, 2020
Manganese uptake by MtsABC contributes to the pathogenesis of human pathogen group A streptococcus by resisting host
Nishanth Makthal1,2, Subhasree Saha1,2, Elaine Huang1,2
1Center for Molecular and Translational Human Infectious Diseases Research, Houston Methodist Research Institute, Houston, Texas, USA.
Abstract:
The interplay between host nutritional immune mechanisms and bacterial nutrient uptake systems has a major impact on the disease outcome. The host immune factor calprotectin (CP) limits the availability of essential transition metals, such as manganese (Mn) and zinc (Zn), to control the growth of invading pathogens. We previously demonstrated that the competition between CP and the human pathogen group A streptococcus (GAS) for Zn impacts GAS pathogenesis. However, the contribution of Mn sequestration by CP in GAS infection control and the role of GAS Mn acquisition systems in overcoming host-imposed Mn limitation remain unknown. Using a combination of in vitro and in vivo studies, we show that GAS-encoded mtsABC is a Mn uptake system that aids bacterial evasion of CP-imposed Mn scarcity and promotes GAS virulence. Mn deficiency caused by either the inactivation of mtsC or CP also impaired the protective function of GAS-encoded Mn-dependent superoxide dismutase. Our ex vivo studies using human saliva show that saliva is a Mn-scant body fluid, and Mn acquisition by MtsABC is critical for GAS survival in human saliva. Finally, animal infection studies using wild-type (WT) and CP-/- mice showed that MtsABC is critical for GAS virulence in WT mice but dispensable in mice lacking CP, indicating the direct interplay between MtsABC and CP in vivo. Together, our studies elucidate the role of the Mn import system in GAS evasion of host-imposed metal sequestration and underscore the translational potential of MtsABC as a therapeutic or prophylactic target.
Insights
Group A Streptococcus (GAS) uses the MtsABC manganese uptake system to evade host immune defenses, specifically calprotectin (CP), and promote infection. This manganese acquisition is crucial for GAS virulence and survival in nutrient-limited environments like saliva.
Area of Science:
- Microbiology
- Immunology
- Pathogenesis
Background:
- Host immune factors like calprotectin (CP) sequester essential metals, impacting pathogen growth.
- Group A Streptococcus (GAS) pathogenesis is influenced by competition for zinc, but manganese (Mn) roles are unclear.
Purpose of the Study:
- To investigate the role of manganese (Mn) acquisition systems in GAS evasion of host immunity.
- To determine the contribution of CP-mediated Mn sequestration to GAS infection control.
Main Methods:
- Utilized in vitro and in vivo studies, including gene inactivation and animal infection models (WT and CP-/- mice).
- Assessed bacterial survival in human saliva and the function of Mn-dependent superoxide dismutase.
Main Results:
- GAS-encoded MtsABC is identified as a Mn uptake system critical for evading CP-imposed Mn scarcity.
- Mn deficiency, due to MtsC inactivation or CP absence, impaired GAS Mn-dependent superoxide dismutase activity.
- MtsABC is essential for GAS virulence in WT mice but not in CP-/- mice, highlighting in vivo interplay.
- MtsABC-mediated Mn acquisition is vital for GAS survival in Mn-scant human saliva.
Conclusions:
- The MtsABC manganese import system is a key mechanism for GAS to overcome host-imposed metal sequestration.
- MtsABC represents a potential therapeutic or prophylactic target for GAS infections.
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