Vitamin D Signaling from Nephrogenesis to Neoplasia: Spatial Protein Expression in Fetal Kidney and Transcriptomic

Ivana Bevanda1, Natalija Filipović2,3, Nela Kelam2,3

  • 1Department of Endocrinology, University Hospital Mostar, Bijeli Brijeg bb, 88000 Mostar, Bosnia and Herzegovina.

Insights

This study maps vitamin D receptor (VDR) and 1α-hydroxylase protein expression during human kidney development. Findings reveal dynamic changes and dysregulation in adult renal cancers, highlighting the pathway's relevance.

Area of Science:

  • Developmental biology
  • Molecular endocrinology
  • Renal physiology

Background:

  • Vitamin D signaling is crucial for immune function, bone metabolism, and cell differentiation.
  • Spatial and temporal protein expression of VDR and 1α-hydroxylase during human nephrogenesis remains uncharacterized.
  • Understanding developmental expression provides context for adult renal pathologies.

Purpose of the Study:

  • To map VDR and 1α-hydroxylase protein expression during human kidney development.
  • To compare developmental expression patterns with gene dysregulation in adult renal and urothelial cancers.

Main Methods:

  • Immunofluorescence staining of human kidney tissues from 10, 22, and 38 gestational weeks, and 1.5 years postnatal.
  • Quantification of protein expression using ImageJ and statistical analysis (ANOVA, Tukey's test).
  • Bioinformatic analysis of VDR, CYP27B1, and CYP24A1 expression in TCGA renal and urothelial cancer cohorts.

Main Results:

  • VDR and 1α-hydroxylase expression peaked at 10 weeks gestational age, decreasing in later developmental stages.
  • Co-expression was observed throughout development, with exceptions in 22-week glomeruli.
  • TCGA analysis showed cohort-specific VDR dysregulation (decreased in KICH, increased in KIRC/KIRP) and altered CYP24A1/CYP27B1 expression in adult cancers.

Conclusions:

  • Provides the first spatial protein map of VDR and 1α-hydroxylase during human kidney development.
  • Demonstrates a developmental shift in expression from glomeruli to tubular segments.
  • Highlights cohort-specific vitamin D pathway dysregulation in renal malignancies, indicating retained kidney-specific functional relevance.

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