PATJ deficiency leads to cystic kidney disease and related ciliopathies

HGG Adv. 2026 Jan 15;7(1):100514. doi: 10.1016/j.xhgg.2025.100514. Epub 2025 Sep 9.

Abstract

Cystic kidney disease and related ciliopathies are caused by pathogenic variants in genes that commonly result in ciliary dysfunction. For a substantial number of individuals affected by those cilia-related diseases, the causative gene remains unknown. Using massively parallel sequencing, we here identified a pathogenic bi-allelic variant in the gene encoding PALS1-associated tight junction protein ([PATJ] also known as inactivation-no-afterpotential D-like, INADL) in an individual with ciliopathy. The affected fetus carried the homozygous truncating PATJ nonsense variant c.830delC (p.Pro277fsX), and presented with a syndromic phenotype mainly characterized by polycystic kidney disease and hydrocephalus. Using zebrafish (Danio rerio) as a vertebrate in vivo model organism, we could validate our patient findings and demonstrated a ciliopathy phenotype. In addition, we were able to address a hitherto not described role of Patj for cilia formation and function. Taken together, with the Crumbs cell polarity complex member PATJ, we add a new member to the large family of ciliopathy-related human disease proteins that is different from the classical ciliopathy protein classes, and may offer new perspectives for drug development.

Keywords: MPDZ; MUPP1; Reissner fiber; cilia; ciliopathy; hydrocephalus; massively parallel sequencing; morpholino; polycystic kidney disease; zebrafish.

Publication types

  • Case Reports

MeSH terms

  • Animals
  • Cilia / metabolism
  • Ciliopathies* / genetics
  • Ciliopathies* / pathology
  • Disease Models, Animal
  • Humans
  • Kidney Diseases, Cystic* / diagnosis
  • Kidney Diseases, Cystic* / genetics
  • Kidney Diseases, Cystic* / metabolism
  • Kidney Diseases, Cystic* / pathology
  • Membrane Proteins* / deficiency
  • Membrane Proteins* / genetics
  • Phenotype
  • Tight Junction Proteins* / deficiency
  • Tight Junction Proteins* / genetics
  • Zebrafish / genetics

Substances

  • Membrane Proteins
  • Tight Junction Proteins