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LTBP4 Protects Against Renal Fibrosis via Mitochondrial and Vascular Impacts
Chi-Ting Su1,2, Daniel H W See1,2, Yue-Jhu Huang1
1Department of Medicine, National Taiwan University Cancer Center Hospital, Taipei (C.-T.S., D.H.W.S., Y.-J.H.).
Background:
As a part of natural disease progression, acute kidney injury (AKI) can develop into chronic kidney disease via renal fibrosis and inflammation. LTBP4 (latent transforming growth factor beta binding protein 4) regulates transforming growth factor beta, which plays a role in renal fibrosis pathogenesis. We previously investigated the role of LTBP4 in chronic kidney disease. Here, we examined the role of LTBP4 in AKI.
Methods:
LTBP4 expression was evaluated in human renal tissues, obtained from healthy individuals and patients with AKI, using immunohistochemistry. LTBP4 was knocked down in both C57BL/6 mice and human renal proximal tubular cell line HK-2. AKI was induced in mice and HK-2 cells using ischemia-reperfusion injury and hypoxia, respectively. Mitochondrial division inhibitor 1, an inhibitor of DRP1 (dynamin-related protein 1), was used to reduce mitochondrial fragmentation. Gene and protein expression were then examined to assess inflammation and fibrosis. The results of bioenergetic studies for mitochondrial function, oxidative stress, and angiogenesis were assessed.
Results:
LTBP4 expression was upregulated in the renal tissues of patients with AKI. Ltbp4-knockdown mice showed increased renal tissue injury and mitochondrial fragmentation after ischemia-reperfusion injury, as well as increased inflammation, oxidative stress, and fibrosis, and decreased angiogenesis. in vitro studies using HK-2 cells revealed similar results. The energy profiles of Ltbp4-deficient mice and LTBP4-deficient HK-2 cells indicated decreased ATP production. LTBP4-deficient HK-2 cells exhibited decreased mitochondrial respiration and glycolysis. Human aortic endothelial cells and human umbilical vein endothelial cells exhibited decreased angiogenesis when treated with LTBP4-knockdown conditioned media. Mitochondrial division inhibitor 1 treatment ameliorated inflammation, oxidative stress, and fibrosis in mice and decreased inflammation and oxidative stress in HK-2 cells.
Conclusions:
Our study is the first to demonstrate that LTBP4 deficiency increases AKI severity, consequently leading to chronic kidney disease. Potential therapies focusing on LTBP4-associated angiogenesis and LTBP4-regulated DRP1-dependent mitochondrial division are relevant to renal injury.
Insights
Latent transforming growth factor beta binding protein 4 (LTBP4) deficiency worsens acute kidney injury (AKI) severity, increasing fibrosis and inflammation. This suggests LTBP4 is crucial for mitigating renal injury and preventing chronic kidney disease progression.
Area of Science:
- Nephrology
- Cell Biology
- Molecular Biology
Background:
- Acute kidney injury (AKI) can progress to chronic kidney disease through fibrosis and inflammation.
- Latent transforming growth factor beta binding protein 4 (LTBP4) influences transforming growth factor beta, a key factor in renal fibrosis.
- This study investigates the role of LTBP4 in the pathogenesis of AKI.
Purpose of the Study:
- To examine the role of LTBP4 in acute kidney injury (AKI).
- To determine if LTBP4 deficiency exacerbates renal injury and fibrosis.
- To explore potential therapeutic targets related to LTBP4 in kidney disease.
Main Methods:
- LTBP4 expression was assessed in human renal tissues from healthy individuals and AKI patients.
- LTBP4 was knocked down in mice and human renal proximal tubular HK-2 cells.
- AKI was induced via ischemia-reperfusion injury in mice and hypoxia in HK-2 cells.
- Mitochondrial function, inflammation, fibrosis, and angiogenesis were evaluated.
Main Results:
- LTBP4 expression was upregulated in AKI patient kidneys.
- LTBP4 knockdown in mice and HK-2 cells led to increased renal injury, mitochondrial fragmentation, inflammation, oxidative stress, and fibrosis.
- LTBP4 deficiency resulted in decreased ATP production, impaired mitochondrial respiration, and reduced angiogenesis.
Conclusions:
- LTBP4 deficiency exacerbates AKI severity, potentially contributing to chronic kidney disease.
- LTBP4 plays a protective role in renal injury.
- Therapeutic strategies targeting LTBP4-associated angiogenesis and DRP1-dependent mitochondrial division may be beneficial for renal injury.
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