Go to The Journal of Clinical Investigation
  • About
  • Editors
  • Consulting Editors
  • For authors
  • Journal stats
  • Publication ethics
  • Publication alerts by email
  • Transfers
  • Advertising
  • Job board
  • Contact
  • Physician-Scientist Development
  • Current issue
  • Past issues
  • By specialty
    • COVID-19
    • Cardiology
    • Immunology
    • Metabolism
    • Nephrology
    • Oncology
    • Pulmonology
    • All ...
  • Videos
  • Collections
    • In-Press Preview
    • Resource and Technical Advances
    • Clinical Research and Public Health
    • Research Letters
    • Editorials
    • Perspectives
    • Physician-Scientist Development
    • Reviews
    • Top read articles

  • Current issue
  • Past issues
  • Specialties
  • In-Press Preview
  • Resource and Technical Advances
  • Clinical Research and Public Health
  • Research Letters
  • Editorials
  • Perspectives
  • Physician-Scientist Development
  • Reviews
  • Top read articles
  • About
  • Editors
  • Consulting Editors
  • For authors
  • Journal stats
  • Publication ethics
  • Publication alerts by email
  • Transfers
  • Advertising
  • Job board
  • Contact
Krüppel-like factor 4 is a negative regulator of STAT3-induced glomerular epithelial cell proliferation
Chelsea C. Estrada, Praharshasai Paladugu, Yiqing Guo, Jesse Pace, Monica P. Revelo, David J. Salant, Stuart J. Shankland, Vivette D. D’Agati, Anita Mehrotra, Stephanie Cardona, Agnieszka B. Bialkowska, Vincent W. Yang, John C. He, Sandeep K. Mallipattu
Chelsea C. Estrada, Praharshasai Paladugu, Yiqing Guo, Jesse Pace, Monica P. Revelo, David J. Salant, Stuart J. Shankland, Vivette D. D’Agati, Anita Mehrotra, Stephanie Cardona, Agnieszka B. Bialkowska, Vincent W. Yang, John C. He, Sandeep K. Mallipattu
View: Text | PDF
Research Article Nephrology

Krüppel-like factor 4 is a negative regulator of STAT3-induced glomerular epithelial cell proliferation

  • Text
  • PDF
Abstract

Pathologic glomerular epithelial cell (GEC) hyperplasia is characteristic of both rapidly progressive glomerulonephritis (RPGN) and subtypes of focal segmental glomerulosclerosis (FSGS). Although initial podocyte injury resulting in activation of STAT3 signals GEC proliferation in both diseases, mechanisms regulating this are unknown. Here, we show that the loss of Krüppel-like factor 4 (KLF4), a zinc-finger transcription factor, enhances GEC proliferation in both RPGN and FSGS due to dysregulated STAT3 signaling. We observed that podocyte-specific knockdown of Klf4 (C57BL/6J) increased STAT3 signaling and exacerbated crescent formation after nephrotoxic serum treatment. Interestingly, podocyte-specific knockdown of Klf4 in the FVB/N background alone was sufficient to activate STAT3 signaling, resulting in FSGS with extracapillary proliferation, as well as renal failure and reduced survival. In cultured podocytes, loss of KLF4 resulted in STAT3 activation and cell-cycle reentry, leading to mitotic catastrophe. This triggered IL-6 release into the supernatant, which activated STAT3 signaling in parietal epithelial cells. Conversely, either restoration of KLF4 expression or inhibition of STAT3 signaling improved survival in KLF4-knockdown podocytes. Finally, human kidney biopsy specimens with RPGN exhibited reduced KLF4 expression with a concomitant increase in phospho-STAT3 expression as compared with controls. Collectively, these results suggest the essential role of KLF4/STAT3 signaling in podocyte injury and its regulation of aberrant GEC proliferation.

Authors

Chelsea C. Estrada, Praharshasai Paladugu, Yiqing Guo, Jesse Pace, Monica P. Revelo, David J. Salant, Stuart J. Shankland, Vivette D. D’Agati, Anita Mehrotra, Stephanie Cardona, Agnieszka B. Bialkowska, Vincent W. Yang, John C. He, Sandeep K. Mallipattu

×

Figure 4

Podocin-Cre Klf4fl/fl (FVB/N) mice exhibit FSGS, renal failure and reduced survival.

Options: View larger image (or click on image) Download as PowerPoint

Podocin-Cre Klf4fl/fl (FVB/N) mice exhibit FSGS, renal failure and redu...
(A) Representative images of periodic acid-Schiff (PAS) staining for Podocin-Cre Klf4+/+ (FVB/N) mice (i: ×10 and ii: ×40) and Podocin-Cre Klf4fl/fl (FVB/N) mice (iii: ×10 and iv–viii: ×40). Representative images show (iv–v) podocyte detachment (arrowhead, inset 120×), (vi) extracapillary proliferation (pound sign), (vi) glomerular epithelial cell mitosis (arrow, inset 120×), and (vii–viii) parietal epithelial cytoplasmic extensions (asterisk). Scale bars: 50 µm (10× images), 20 µm (40× images). (B) Electron microscopy was performed to assess ultrastructural changes in podocyte morphology (×6,800; ×13,000; and ×49,000; scale bars: 3 µm, 750 nm, and 600 nm, respectively). Representative images show normal upright foot processes (arrow), podocyte effacement and denuded basement membrane (arrowhead), parietal epithelial cytoplasmic extensions (asterisk), and enlarged mitochondria with disrupted cristae (pound sign). (C) Albuminuria (urine albumin/creatinine) (n = 10 in Podocin-Cre Klf4+/+ and 17 in Podocin-Cre Klf4fl/fl; **P < 0.01; Mann-Whitney U test) and (D) serum creatinine at 12 weeks of age (n = 7 in Podocin-Cre Klf4+/+ and 10 in Podocin-Cre Klf4fl/fl; **P < 0.01; Mann-Whitney U test). (E) Survival curves for Podocin-Cre Klf4+/+ and Podocin-Cre Klf4fl/fl mice are shown till age 52 weeks (n = 30–40 in each group; P = 0.002; log-rank [Mantel-Cox] test).

Copyright © 2026 American Society for Clinical Investigation
ISSN 2379-3708

Sign up for email alerts