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Published on: February 22, 2017
Immunomodulatory effects of Yersinia pestis lipopolysaccharides on human macrophages
Motohiro Matsuura1, Hideyuki Takahashi, Haruo Watanabe
1Department of Infection and Immunity, School of Medicine, Jichi Medical University, 3311-1 Yakushiji, Shimotsuke, Tochigi 329-0498, Japan. mmatsuur@jichi.ac.jp
Abstract:
In the current study, we investigated the activity of lipopolysaccharide (LPS) purified from Yersinia pestis grown at either 27 degrees C or 37 degrees C (termed LPS-27 and LPS-37, respectively). LPS-27 containing hexa-acylated lipid A, similar to the LPS present in usual gram-negative bacteria, stimulated an inflammatory response in human U937 cells through Toll-like receptor 4 (TLR4). LPS-37, which did not contain hexa-acylated lipid A, exhibited strong antagonistic activity to the TLR4-mediated inflammatory response. The phagocytic activity in the cells was not affected by LPS-37. To estimate the activity of LPS in its bacterial binding form, formalin-killed bacteria (FKB) were prepared from Y. pestis cells grown at 27 degrees C or 37 degrees C (termed FKB-27 and FKB-37, respectively). FKB-27 strongly stimulated the inflammatory response. This activity was suppressed in the presence of an anti-TLR4 antibody but not an anti-TLR2 antibody. In addition, this activity was almost completely suppressed by LPS-37, indicating that the activity of FKB-27 is predominantly derived from the LPS-27 bacterial binding form. In contrast, FKB-37 showed no antagonistic activity. The results arising from the current study indicate that Y. pestis causes infection in humans without stimulating the TLR4-based defense system via bacterial binding of LPS-37, even when bacterial free LPS-37 is not released to suppress the defense system. This is in contrast to the findings for bacteria that possess agonistic LPS types, which are easily recognized by the defense system via the bacterial binding forms.
Insights
Yersinia pestis lipopolysaccharide (LPS) activity differs based on growth temperature. LPS-37, lacking hexa-acylated lipid A, inhibits Toll-like receptor 4 (TLR4) inflammatory responses, allowing Y. pestis to evade immune detection.
Area of Science:
- Immunology
- Microbiology
- Molecular Biology
Background:
- Lipopolysaccharide (LPS) from Gram-negative bacteria typically triggers inflammatory responses via Toll-like receptor 4 (TLR4).
- Yersinia pestis, the causative agent of plague, has LPS with varying structures depending on growth conditions.
Purpose of the Study:
- To investigate the immunomodulatory activity of Yersinia pestis LPS (LPS-27 and LPS-37) and their role in evading host defense mechanisms.
- To determine the contribution of bacterial-bound LPS to immune stimulation.
Main Methods:
- Purification and characterization of LPS from Y. pestis grown at 27°C (LPS-27) and 37°C (LPS-37).
- Assessment of inflammatory responses in human U937 cells using TLR4 activation assays.
- Preparation and testing of formalin-killed Y. pestis (FKB-27 and FKB-37) to evaluate bacterial-bound LPS activity.
- Inhibition studies using anti-TLR4 and anti-TLR2 antibodies, and LPS-37.
Main Results:
- LPS-27, containing hexa-acylated lipid A, potently stimulated TLR4-mediated inflammation.
- LPS-37, lacking hexa-acylated lipid A, exhibited strong antagonistic activity against TLR4 activation.
- Bacterial-bound LPS-27 in FKB-27 strongly induced inflammation, suppressed by LPS-37 and anti-TLR4 antibodies.
- FKB-37 did not induce significant inflammatory responses.
Conclusions:
- Y. pestis utilizes LPS-37 to evade the TLR4-based innate immune system during infection.
- The absence of hexa-acylated lipid A in LPS-37 is crucial for its antagonistic function.
- Bacterial-bound LPS-37 allows Y. pestis to establish infection without activating host defense pathways.
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