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Insights into mechanisms responsible for mesangial alterations associated with fibrogenic glomerulopathic light
Jiamin Teng1, Ping L Zhang, William J Russell
1Department of Pathology, Louisiana State University Health Sciences Center, Shreveport 71130, USA.
Abstract:
Our previous studies have shown that human mesangial cells (HMCs) incubated with fibrogenic glomerulopathic monoclonal light chains (G-LCs) obtained from the urine of patients with light chain deposition disease produce increased extracellular matrix (ECM) when compared with HMCs not exposed to fibrogenic LCs. This overproduction of ECM proteins is regulated by transforming growth factor-beta (TGF-beta); blocking TGF-beta normalizes the production of ECM proteins. All ECM proteins, after synthesis, have to go through the secretory pathway in the endoplasmic reticulum (ER) and Golgi complex for final maturation and secretion. Blocking the secretory pathway may reduce the accumulation of ECM proteins. We tested the effect of tunicamycin, a specific inhibitor of N-linked glycosylation in the ER which inhibited glycosylation and brefeldin A, an inhibitor of vesicle transport between the endoplasmic reticulum and the Golgi complex, on ECM protein production, both resulting in subsequent upregulation of glucose-regulated protein 78. Overproduction of fibronectin and tenascin by HMCs was normalized by tunicamycin and brefeldin A. Similarly, when HMCs were exposed to exogenous TGF-beta, the increase in fibronectin was reversed by tunicamycin and brefeldin A. Exogenous platelet-derived growth factor-beta (PDGF-beta) did not induce fibronectin overproduction but significantly stimulated proliferation of HMCs. In summary, this study further supports the notion that fibrogenic G-LCs promote the accumulation of ECM proteins, through the actions of TGF-beta. Importantly, the data indicate that altering protein trafficking in the ER results in impairment of secretion of proteins into the ECM. Furthermore, the data also reveal that PDGF-beta and TGF-beta act independently and that PDGF-beta activation by itself cannot increase ECM proteins directly, but only by increasing the number of HMCs.
Insights
Fibrogenic light chains cause extracellular matrix (ECM) overproduction in human mesangial cells (HMCs) via TGF-beta. Inhibiting protein secretion pathways in the endoplasmic reticulum (ER) normalized ECM production, suggesting a new therapeutic target.
Area of Science:
- Nephrology
- Cell Biology
- Molecular Biology
Background:
- Human mesangial cells (HMCs) exposed to fibrogenic glomerulopathic monoclonal light chains (G-LCs) overproduce extracellular matrix (ECM).
- Transforming growth factor-beta (TGF-beta) regulates this ECM overproduction; blocking TGF-beta normalizes ECM protein synthesis.
- ECM proteins mature and are secreted via the endoplasmic reticulum (ER) and Golgi complex secretory pathway.
Purpose of the Study:
- To investigate the effect of inhibiting the secretory pathway on ECM protein production by HMCs.
- To explore the role of tunicamycin and brefeldin A in modulating G-LC-induced ECM overproduction.
- To elucidate the independent roles of platelet-derived growth factor-beta (PDGF-beta) and TGF-beta in HMC function.
Main Methods:
- Incubation of HMCs with fibrogenic G-LCs and/or TGF-beta or PDGF-beta.
- Treatment with tunicamycin (N-linked glycosylation inhibitor) and brefeldin A (vesicle transport inhibitor).
- Measurement of ECM protein production (fibronectin, tenascin) and HMC proliferation.
- Assessment of glucose-regulated protein 78 (GRP78) as a marker of ER stress.
Main Results:
- Tunicamycin and brefeldin A normalized fibronectin and tenascin overproduction induced by G-LCs and TGF-beta.
- Both inhibitors led to the upregulation of GRP78, indicating interference with the ER.
- PDGF-beta stimulated HMC proliferation but did not induce fibronectin overproduction independently.
Conclusions:
- Fibrogenic G-LCs promote ECM accumulation in HMCs primarily through TGF-beta.
- Interfering with ER protein trafficking impairs ECM secretion, offering a potential therapeutic strategy.
- PDGF-beta and TGF-beta act independently; PDGF-beta increases ECM indirectly by promoting HMC proliferation.