Geranylgeranyl diphosphate synthase deficiency hyperactivates macrophages and aggravates lipopolysaccharide-induced acute lung injury

Author:

Jin Jiajia1,Qian Hong2,Wan Bing3,Zhou Li4,Chen Cen5,Lv Yanling6,Chen Meizi7,Zhu Suhua5,Ye Liang8,Wang Xiaoxia9,Xu Wujian1,Lv Tangfeng1,Song Yong1

Affiliation:

1. Department of Respiratory and Critical Care Medicine, Jinling Hospital, Southern Medical University (Guangzhou), China

2. Department of Orthopaedic Surgery, Southern Medical University, China

3. Department of Respiratory and Critical Care Medicine, The First Affiliated Jiangning Hospital of Nanjing University, China

4. Department of Respiratory and Critical Care Medicine, Jinling Hospital, Medical School of Nanjing University, China

5. Department of Respiratory and Critical Care Medicine, Southern Medical University, China

6. The Second Hospital of Nanjing, Nanjing University of Chinese Medicine, China

7. Department of General Internal Medicine, The First People's Hospital of Chenzhou, China

8. Department of Respiratory Medicine, Nanjing Medical University, China

9. Department of Intensive Care Unit, Inner Mongolia People's Hospital, China

Abstract

Macrophage activation is a key contributing factor for excessive inflammatory responses of acute lung injury (ALI)/acute respiratory distress syndrome (ARDS). Geranylgeranyl diphosphate synthase (GGPPS) plays a key role in the development of inflammatory diseases. Our group previously showed that GGPPS in alveolar epithelium have deleterious effects on acute lung injury induced by LPS or mechanical ventilation. Herein, we examined the role of GGPPS in modulating macrophage activation in ALI/ARDS. We found significant increased GGPPS expression in alveolar macrophages in ARDS patients compared to healthy volunteers and in ALI mice induced by LPS. GGPPS-floxed control (GGPPSfl/fl) and myeloid-selective knockout (GGPPSfl/flLysMcre) mice were then generated. Interestingly, using a LPS-induced ALI mouse model, we showed that myeloid-specific GGPPS knockout significantly increased mortality, aggravated lung injury, and increased the accumulation of inflammatory cells, total protein, and inflammatory cytokines in BALF. In vitro, GGPPS deficiency up-regulated the production of LPS-induced IL-6, IL-1β, and TNF-α in alveolar macrophages, bone marrow-derived macrophages (BMDMs), and THP-1 cells. Mechanistically, GGPPS knockout increased phosphorylation and nuclear translocation of NF-κB p65 induced by LPS. In addition, GGPPS deficiency increased the level of GTP-Rac1, which was responsible for NF-κB activation. In conclusion, decreased expression of GGPPS in macrophages aggravates lung injury and inflammation in ARDS, at least partly by regulating Rac1-dependent NF-κB signaling. GGPPS in macrophages may represent a novel therapeutic target in ARDS.

Funder

National Natural Science Foundation of China

Natural Science of Jiangsu Province

Inner Mongolia People's Hospital Research Fund

Natural Science Foundation of Inner Mongolia Region

Jiangsu Planned Projects for Postdoctoral Research Funds

Publisher

American Physiological Society

Subject

Cell Biology,Physiology (medical),Pulmonary and Respiratory Medicine,Physiology

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