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.).

PubMed
Abstract

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.