Tissue-type plasminogen activator modulates macrophage M2 to M1 phenotypic change through annexin A2-mediated NF-κB
1Department of Cellular and Molecular Physiology, Penn State University College of Medicine, Hershey, Pennsylvania, USA.
Abstract:
Macrophage accumulation is one of the hallmarks of progressive kidney disease. In response to injury, macrophages undergo a phenotypic polarization to become two functionally distinct subsets: M1 and M2 macrophages. Macrophage polarization is a dynamic process, and recent work indicates that macrophages, in response to kidney injury, can shift their polarity. However, the underlying mechanisms remain largely unknown. Tissue-type plasminogen activator (tPA), a protease up-regulated in the chronically injured kidneys, has been shown to preferably promote M1 macrophage accumulation and renal inflammation. We hypothesized that tPA may be an endogenous factor that modulates macrophage M2 to M1 phenotypic change contributing to the accumulation of M1 macrophages in the injured kidneys. It was found that obstruction-induced renal M1 chemokine expression was alleviated in tPA knockout mice, and these knockout mice displayed increased M2 markers. In vitro, resting J774 macrophages were treated with IL-4 to induce M2 phenotype as indicated by de novo expression of arginase 1, Ym1, and IL-10, as well as suppression of iNOS, TNF-α, and IL-1β. Intriguingly, these IL-4-induced M2 macrophages, after tPA treatment, not only lost their M2 markers such as arginase 1, Ym1, and IL-10, but also displayed increased M1 chemokines including iNOS, TNF-α, and IL-1β. Possible endotoxin contamination was also excluded as heat-inactivated tPA lost its effect. Additionally, tPA-mediated macrophage M2 to M1 phenotypic change required its receptor annexin A2, and SN50, a specific NF-κB inhibitor, abolished tPA's effect. Thus, it's clear that tPA promotes macrophage M2 to M1 phenotypic change through annexin A2-mediated NF-κB pathway.
Insights
Tissue-type plasminogen activator (tPA) drives M2 to M1 macrophage polarization in kidney injury. This shift promotes M1 macrophage accumulation and renal inflammation via the annexin A2-NF-κB pathway.
Area of Science:
- Nephrology
- Immunology
- Molecular Biology
Background:
- Macrophage accumulation is a key feature of progressive kidney disease.
- Macrophages polarize into distinct M1 (pro-inflammatory) and M2 (anti-inflammatory/pro-resolving) subsets.
- The dynamic nature of macrophage polarization and its regulation in kidney injury are not fully understood.
Purpose of the Study:
- To investigate the role of tissue-type plasminogen activator (tPA) in modulating macrophage polarization during kidney injury.
- To determine if tPA promotes the M2 to M1 macrophage phenotypic switch.
- To elucidate the molecular mechanisms underlying tPA-mediated macrophage polarization.
Main Methods:
- Utilized tPA knockout mice to assess renal M1 and M2 chemokine expression following kidney obstruction.
- Employing in vitro studies with J774 macrophages, inducing M2 phenotype with IL-4 and subsequently treating with tPA.
- Investigated the role of annexin A2 and the NF-κB pathway using specific inhibitors and receptor blocking.
Main Results:
- tPA knockout mice exhibited reduced M1 chemokine expression and increased M2 markers after kidney obstruction.
- In vitro, tPA treatment reversed IL-4-induced M2 macrophage markers (e.g., arginase 1, Ym1, IL-10) and increased M1 markers (e.g., iNOS, TNF-α, IL-1β).
- tPA-induced M2 to M1 polarization was dependent on its receptor annexin A2 and the NF-κB signaling pathway.
Conclusions:
- Tissue-type plasminogen activator (tPA) promotes the M2 to M1 macrophage phenotypic shift in the context of kidney injury.
- This tPA-driven polarization contributes to renal inflammation and M1 macrophage accumulation.
- The annexin A2-mediated NF-κB pathway is essential for tPA's effect on macrophage polarization.
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