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Ac2-26 Induces IKKβ Degradation Through Chaperone-Mediated Autophagy Via HSPB1 in NCM-Treated Microglia
Lu Liu1,2, Dandan An1,2, Junying Xu1,2
1Department of Neurobiology and Key Laboratory of Neurological Diseases of Ministry of Education, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, China.
Abstract:
Annexin A1 (ANXA1) is an endogenous protein with potent anti-inflammatory properties in the brain. Although ANXA1 has been predominantly studied for its binding to formyl peptide receptors (FPRs) on plasma membranes, little is known regarding whether this protein has an anti-inflammatory effect in the cytosol. Here, we investigated the mechanism by which the ANXA1 peptide Ac2-26 decreases high TNF-α production and IKKβ activity, which was caused by oxygen glucose deprivation/reperfusion (OGD/R)-induced neuronal conditioned medium (NCM) in microglia. We found that exogenous Ac2-26 crosses into the cytoplasm of microglia and inhibits both gene expression and protein secretion of TNF-α. Ac2-26 also causes a decrease in IKKβ protein but not IKKβ mRNA, and this effect is inverted by lysosome inhibitor NH4CL. Furthermore, we demonstrate that Ac2-26 induces IKKβ accumulation in lysosomes and that lysosomal-associated membrane protein 2A (LAMP-2A), not LC-3, is enhanced in microglia exposed to Ac2-26. We hypothesize that Ac2-26 mediates IKKβ degradation in lysosomes through chaperone-mediated autophagy (CMA). Interestingly, ANXA1 in the cytoplasm does not interact with IKKβ but with HSPB1, and Ac2-26 promotes HSPB1 binding to IKKβ. Furthermore, both ANXA1 and HSPB1 can interact with Hsc70 and LAMP-2A, but IKKβ only associates with LAMP-2A. Downregulation of HSPB1 or LAMP-2A reverses the degradation of IKKβ induced by Ac2-26. Taken together, these findings define an essential role of exogenous Ac2-26 in microglia and demonstrate that Ac2-26 is associated with HSPB1 and promotes HSPB1 binding to IKKβ, which is degraded by CMA, thereby reducing TNF-α expression.
Insights
The Annexin A1 (ANXA1) peptide Ac2-26 reduces brain inflammation by targeting IKKβ for lysosomal degradation via chaperone-mediated autophagy (CMA) in microglia, decreasing TNF-α production.
Area of Science:
- Neuroinflammation
- Cell Biology
- Molecular Mechanisms
Background:
- Annexin A1 (ANXA1) is known for anti-inflammatory effects, primarily via plasma membrane receptors.
- Its role and mechanism within the cell cytosol, particularly in microglia, remain largely unexplored.
Purpose of the Study:
- To investigate the intracellular mechanism by which the ANXA1 peptide Ac2-26 reduces tumor necrosis factor-alpha (TNF-α) and IκB kinase subunit beta (IKKβ) activity in microglia.
- To elucidate the role of chaperone-mediated autophagy (CMA) in this process.
Main Methods:
- Utilized oxygen glucose deprivation/reperfusion (OGD/R)-induced neuronal conditioned medium (NCM) in microglia.
- Administered exogenous Ac2-26 and assessed TNF-α and IKKβ levels, gene expression, and protein secretion.
- Investigated the involvement of lysosomes, CMA, and associated proteins (LAMP-2A, HSPB1, Hsc70) using inhibitors and downregulation techniques.
Main Results:
- Exogenous Ac2-26 entered microglia cytoplasm, inhibiting TNF-α gene expression and secretion.
- Ac2-26 reduced IKKβ protein levels, an effect reversed by lysosome inhibitors.
- Ac2-26 promoted IKKβ accumulation in lysosomes, enhancing lysosomal-associated membrane protein 2A (LAMP-2A) and involving HSPB1 and Hsc70 in IKKβ degradation via CMA.
Conclusions:
- Exogenous Ac2-26 triggers IKKβ degradation in lysosomes through CMA in microglia.
- This process involves ANXA1, HSPB1, Hsc70, and LAMP-2A, leading to reduced TNF-α expression.
- Defines a novel intracellular anti-inflammatory pathway for ANXA1-derived peptides in microglia.
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