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Published on: June 30, 2016
Mycoplasma pneumoniae drives macrophage lipid uptake via GlpD-mediated oxidation, facilitating foam cell formation
Takeshi Yamamoto1, Miki Okuno1, Koichi Kuwano1
1Division of Microbiology, Department of Infectious Medicine, Kurume University School of Medicine, 67 Asahi-machi, Kurume 830-0011, Japan.
Abstract:
Cardiovascular diseases, primarily caused by atherosclerosis, are a major public health concern worldwide. Atherosclerosis is characterized by chronic inflammation and lipid accumulation in the arterial wall, leading to plaque formation. In this process, macrophages play a crucial role by ingesting lipids and transforming into foam cells, which contribute to plaque instability and cardiovascular events. Recent studies have suggested that various pathogens are involved in the development of atherosclerosis, with Mycoplasma pneumoniae considered one of the potential candidates. Therefore, this study investigated whether this bacterium induces lipid accumulation in macrophages, which play a crucial role in the development of atherosclerosis, using the Raw264.7 model. Our findings revealed that M. pneumoniae infection promotes lipid droplet formation in macrophages. Glycerol 3-phosphate oxidase, GlpD, in the bacterium is involved in this process by producing reactive oxygen species, which in turn causes the oxidation of low-density lipoprotein. Furthermore, the significant increase in the expression of oxidized lipid receptors involved in the uptake of this oxidized lipid indicates that the bacteria promote lipid uptake in infected macrophages. These results suggest that M. pneumoniae has a direct pro-atherogenic effect, promoting the formation of atherosclerotic lesions through foam cell formation. Understanding the mechanisms by which M. pneumoniae influences atherosclerosis provides valuable insights for devising new therapeutic strategies for the prevention and management of cardiovascular diseases.
Insights
Mycoplasma pneumoniae infection promotes lipid accumulation in macrophages, a key step in atherosclerosis development. The bacterium
Area of Science:
- Cardiovascular Science
- Microbiology
- Immunology
Background:
- Cardiovascular diseases, driven by atherosclerosis, are a global health issue.
- Atherosclerosis involves arterial wall inflammation and lipid buildup, forming plaques.
- Macrophages transforming into foam cells are central to plaque instability and cardiovascular events.
Purpose of the Study:
- To investigate if Mycoplasma pneumoniae infection induces lipid accumulation in macrophages.
- To elucidate the mechanisms by which M. pneumoniae influences lipid metabolism in macrophages.
- To assess the pro-atherogenic potential of M. pneumoniae.
Main Methods:
- Utilized the Raw264.7 macrophage cell line model.
- Infected macrophages with Mycoplasma pneumoniae.
- Analyzed lipid droplet formation, reactive oxygen species production, and oxidized lipid receptor expression.
Main Results:
- M. pneumoniae infection significantly promoted lipid droplet formation in macrophages.
- Bacterial glycerol 3-phosphate oxidase (GlpD) produced reactive oxygen species, oxidizing low-density lipoprotein.
- Increased expression of oxidized lipid receptors indicated enhanced lipid uptake by infected macrophages.
Conclusions:
- Mycoplasma pneumoniae directly promotes lipid accumulation in macrophages, contributing to foam cell formation.
- The bacterium exhibits a pro-atherogenic effect, potentially driving atherosclerotic lesion development.
- Understanding M. pneumoniae's role offers therapeutic targets for cardiovascular disease prevention and management.
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