Jul 2026· Cell communication and signaling : CCS· 0 citations
Medicine
TL;DR
Findings reveal that autophagy in MFs is a previously unrecognized driver of cyst expansion and fibrosis in ADPKD and targeting MF-specific autophagy or its upstream regulators may represent a therapeutic strategy to limit cyst growth and fibrosis in ADPKD.
Abstract
Background
Autosomal dominant polycystic kidney disease (ADPKD) is characterized by progressive cyst expansion, fibrosis and inflammation, leading to kidney failure. Myofibroblasts (MFs) often accumulate around cysts and promote fibrosis and cyst growth, but the cellular mechanisms enabling their pro-cystogenic activity remain unclear. Here we examined the role of autophagy within MFs, on their paracrine stimulation of cyst expansion in ADPKD.
Methods
Autophagy was assessed in human ADPKD nephrectomy tissue, primary human ADPKD renal myofibroblasts (ADPKD-MFs) and male RC/RC mouse model of ADPKD using immunostaining, LC3/p62 analyses, and transmission electron microscopy. Autophagy in MFs was inhibited pharmacologically in ADPKD-MFs, or by conditional Atg5 deletion in PDGFRβ-expressing renal stromal cells in RC/RC (RC/RC; Atg5KO) and wild type (WT; Atg5KO) mice.
Results
In human and mouse ADPKD kidneys, we detected LC3 puncta and autophagic organelles within αSMA- expressing MFs. Inhibition of autophagy in ADPKD-MFs blocked their paracrine stimulation of cyst epithelial cell proliferation in vitro. RC/RC; Atg5KO mice showed significantly reduced cystic growth, fibrosis, MF abundance, and improved kidney function. WT; Atg5KO mice showed no abnormalities in kidney structure or function. Targeted metabolomics performed on ADPKD cyst epithelial-cell conditioned media (ADPKD-ECs CM) revealed moderate increase in lactate levels compared to normal human kidney epithelial-cell conditioned media. Furthermore, lactate treatment stabilized hypoxia-inducible factor-1α (HIF1α) in myofibroblasts, while pharmacological inhibition of HIF1α reduced the expression of autophagy-related genes and impaired autophagic flux.
Conclusion
These findings reveal that autophagy in MFs is a previously unrecognized driver of cyst expansion and fibrosis in ADPKD. Lactate-mediated HIF1α stabilization in MFs promotes autophagy that is required for their paracrine stimulation of cyst epithelial growth. Targeting MF-specific autophagy or its upstream regulators may represent a therapeutic strategy to limit cyst growth and fibrosis in ADPKD.
BACKGROUND
Autosomal dominant polycystic kidney disease (ADPKD) is the most common inherited disorder leading to kidney failure. Tolvaptan, the only FDA-approved therapy, modestly slows disease progression but is limited by significant adverse effects, highlighting the need for more effective and better-tolerated treat...
Ying-Shu Cao, Xiao-Bo Sun, Yan Huang et al.· Journal of the American Soci...· 0 citations
A model in which cyst growth arises from mutually reinforcing signaling, metabolic, and transcriptional programs is synthesized, which support a model in which cyst growth arises from mutually reinforcing signaling, metabolic, and transcriptional programs.
R. Ursu, B. Buchholz, K. Skoczynski· American Journal of Physiolo...· 0 citations
A disruption in ferritin handling and iron homeostasis in PKD is demonstrated, suggesting altered iron trafficking promotes localized oxidative stress and fibrosis contributing to disease progression.
Nicole Sommer, Sagine Placide, Elizabeth Weatherly et al.· AJP - Renal Physiology· 0 citations
Using in vivo, ex vivo, tubule-on-chip, and cellular models of ADPKD, Mazloum and colleagues connect cilia-dependent tubule dilation and TBM thinning to early-stage cystogenesis and identify a cilia-dependent TBM remodeling expression signature in affected tubules.
C. Sussman, P. Harris· Journal of Clinical Investig...· 0 citations
Idiopathic pulmonary fibrosis (IPF) is a progressive and invariably fatal interstitial lung disease driven by persistent alveolar epithelial injury, which triggers aberrant fibroblast activation and pathological myofibroblast differentiation. In this study, we identify CD147—a heavily glycosylated transmembrane protein...
Siqi Long, Shuaichen Ma, Cuncun Chu et al.· Journal of Biological Chemis...· 0 citations
Mechanistically, Runx1 enhances proliferation of cyst‐lining epithelial cells by activating the AKT–mTOR, MAPK, and STAT3 signaling cascades, while suppressing p53‐mediated apoptosis.
Yue-Yue Zhang, Chang Liu, Jun-Chi Liu et al.· The FASEB Journal· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.