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February 27, 2026BMC Molecular and Cell Biology0 citationsOpen Access

ALIX and ITCH localize to the base of primary cilia and negatively regulate ciliary Polycystin-2 levels

CBChristina Rahlff BerggreenJLJulie LaplaceFCFabiola Campestre

Key Points

  • The aim is to investigate the roles of ALIX and ITCH in regulating ciliary protein composition and signaling pathways.
  • Identified ALIX localization at the base of primary cilia in mammalian cells.
  • Assessed the interaction between ALIX and ITCH and their reliance on KIF13B for stability.
  • Depleted ALIX and ITCH to evaluate effects on ciliary Polycystin-2 and Smoothened levels.
  • Depletion of ALIX or ITCH increased ciliary Polycystin-2 levels.
  • Loss of ITCH also caused accumulation of Smoothened in cilia.
  • ALIX and ITCH are essential for the regulation of protein composition at cilia.

Abstract

Primary cilia are antenna-like organelles that function as cellular hubs for signaling pathways, including Sonic hedgehog and signaling mediated by the Polycystin-1/Polycystin-2 cation channel complex. Proper regulation of signaling output depends on the dynamic control of ciliary protein composition, which involves intraflagellar transport-mediated trafficking, protein retrieval, and the shedding of extracellular vesicles from cilia. Here we identify ALIX, a protein previously linked to the biogenesis of small extracellular vesicles, as a novel component localized at the base of primary cilia in cultured mammalian cells. We show that ALIX retention at this site requires the ciliary kinesin-3 motor protein KIF13B, which physically interacts with ALIX and the E3 ubiquitin ligase ITCH. In turn, ITCH is enriched at the ciliary base and is essential for ALIX stability. Depletion of either ALIX or ITCH results in elevated ciliary levels of Polycystin-2, while ITCH loss additionally leads to constitutive accumulation of Smoothened, a key Sonic hedgehog effector, within the cilium. Collectively, our findings establish ALIX and ITCH as critical regulators of ciliary membrane protein homeostasis and signaling, acting in coordination with KIF13B to maintain proper ciliary function.

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Cite This Study

Berggreen et al. (2026) studied this question.

synapsesocial.com/papers/69a134fbed1d949a99abe671https://doi.org/10.1186/s12860-026-00571-1
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Loss of KIF13B causes time-dependent changes in ciliary polycystin-2 levels and extracellular vesicle release2024
  2. 2The E3 ubiquitin ligase ITCH negatively regulates intercellular communication via gap junctions by targeting connexin43 for lysosomal degradation2024 · 3 citations
  3. 3IFT139 regulates Hedgehog signaling and cilia structure through ciliary protein localization2025
  4. 4Alix Protein Is Substrate of Ozz-E3 Ligase and Modulates Actin Remodeling in Skeletal Muscle2012 · 31 citations
  5. 5Primary cilia function as hubs for signal transduction2025