Loss of macrophage TSC1 exacerbates sterile inflammatory liver injury through inhibiting the AKT/MST1/NRF2 signaling pathway

Author:

zhu qiang1,Ni Ming2,qiu jiannan3,liu Guoqing4,Sun Xiaohu5,Zhu Wenjie6,Wu Peng4,Chen Zheng4,Qiu Jiajing4,Wu Ziming4,Zhang Yang4,Zhang Feng,Li Changyong7ORCID,Gao Yuan8,Zhou Jun4

Affiliation:

1. Children’s Hospital of Nanjing Medical University, Nanjing, China.

2. First Affiliated Hospital of nanjing medical university

3. First Affiliated Hospital, Nanjing Medical University, Nanjing

4. Children’s Hospital of Nanjing Medical University

5. The First Affiliated Hospital of Nanjing Medical University

6. Kangda College of Nanjing Medical University

7. Department of Physiology, Wuhan University School of Basic Medical Sciences, Wuhan, China

8. University of Rochester Medical Center

Abstract

Abstract Tuberous sclerosis complex 1 (TSC1) plays important roles in regulating innate immunity. However, the precise role of TSC1 in macrophages in the regulation of oxidative stress response and hepatic inflammation in liver ischemia/reperfusion injury (I/R) remains unknown. In a mouse model of liver I/R injury, deletion of myeloid-specific TSC1 inhibited AKT and MST1 phosphorylation, and decreased NRF2 accumulation, whereas activated TLR4/NF-κB pathway, leading to increased hepatic inflammation. Adoptive transfer of AKT- or MST1-overexpressing macrophages, or Keap1 disruption in myeloid-specific TSC1-knockout mice promoted NRF2 activation but reduced TLR4 activity and mitigated I/R-induced liver inflammation. Mechanistically, TSC1 in macrophages promoted AKT and MST1 phosphorylation, and protected NRF2 from Keap1-mediated ubiquitination. Furthermore, overexpression AKT or MST1 in TSC1-knockout macrophages upregulated NRF2 expression, downregulated TLR4/NF-κB, resulting in reduced inflammatory factors, ROS and inflammatory cytokine-mediated hepatocyte apoptosis. Strikingly, TSC1 induction in NRF2-deficientmacrophages failed to reverse the TLR4/NF-κB activity and production of pro-inflammatory factors. Conclusions: Macrophage TSC1 promoted the activation of the AKT/MST1 signaling pathway, increased NRF2 levels via reducing Keap1-mediated ubiquitination, and modulated oxidative stress-driven inflammatory responses in liver I/R injury. Our findings underscore the critical role of macrophage TSC1 as a novel regulator of innate immunity and imply the therapeutic potential for the treatment of sterile liver inflammation in transplant recipients.

Publisher

Research Square Platform LLC

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