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April 5, 2026Cancer Research0 citations

Abstract 6006: Discovery of nuclear p62-PI4,5P2 colocalization suggests a new regulatory layer in cancer proteostasis

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AGAlexandra GebbiaOJOisun JungSCSuyong Choi

Key Points

  • The central aim is to explore the interaction of p62 and PI4,5P2 in the nucleus and its implications for cancer proteostasis.
  • Examined nuclear colocalization of p62 and PI4,5P2 in breast cancer cell lines.
  • Analyzed the effects of nutrient deprivation on p62 levels.
  • Investigated the role of PIP5K1A in regulating p62 expression.
  • Utilized proximity ligation assays and lysosomal activity measurements for functional analysis.
  • Identified nuclear colocalization of p62 and PI4,5P2 specifically in breast cancer cells.
  • Nutrient deprivation decreased p62 protein levels, linking metabolic status to p62 abundance.
  • Loss of PIP5K1A led to reduced p62 levels regardless of nutrient conditions.
  • Uncovered a potential new regulatory axis involving nuclear lipids and p62 in cancer cells.

Abstract

Abstract Aggrephagy, the selective autophagic clearance of protein aggregates, is essential for maintaining cellular homeostasis, particularly in cancer cells undergoing metabolic or proteotoxic stress. This process is mediated by the cargo receptor p62 (sequestosome-1, SQSTM1), which canonically recognizes ubiquitinated protein aggregates in the cytoplasm and delivers them to autophagosomes for lysosomal degradation. Intriguingly, p62 is also detected within nuclear condensates, a phenomenon that remains poorly understood given that autophagy has traditionally been regarded as a strictly cytoplasmic pathway. Within the Phox and Bem1 (PB1) domain of p62, we identified a putative polybasic motif (PBM) capable of binding nuclear phosphoinositides, as well as a ZZ domain previously implicated in DNA binding. Because nuclear phosphoinositides and the kinases that generate them, such as phosphatidylinositol 4-phosphate 5-kinase type 1 alpha (PIP5K1A), regulate transcription, DNA repair, and other spatially organized nuclear processes, we hypothesized that p62 may engage lipid-defined microenvironments within the nucleus. To test this hypothesis, we examined the nuclear interplay of p62 with the signaling lipid phosphatidylinositol 4,5-bisphosphate (PI4,5P2) generated by PIP5K1A. We identified a previously unrecognized nuclear colocalization of p62 and PI4,5P2 in breast cancer cell lines, a pattern not observed in pancreatic ductal adenocarcinoma (PDAC) models, suggesting that nuclear lipid-p62 regulation is highly cell-type specific. Nutrient deprivation reduced both p62 puncta and total p62 protein abundance, indicating that p62 levels are tightly coupled to metabolic status. Notably, genetic loss of PIP5K1A decreased total p62 levels independent of nutrient conditions, revealing that phosphoinositide signaling and metabolic cues converge to control p62 expression. Together, these findings uncover a novel nuclear interaction between p62 and PI4,5P2 and point to a regulatory axis involving PIP5K1A that may influence nuclear condensate formation and p62-dependent stress responses. Ongoing studies using proximity ligation assays, lysosomal activity measurements, and pharmacologic perturbation aim to define the functional significance of this pathway, which may represent an unrecognized therapeutic vulnerability in cancers dependent on p62-mediated proteostasis. Citation Format: Alexandra Gebbia, Oisun Jung, Suyong Choi, . Discovery of nuclear p62-PI4,5P2 colocalization suggests a new regulatory layer in cancer proteostasis abstract. In: Proceedings of the American Association for Cancer Research Annual Meeting 2026; Part 1 (Regular Abstracts); 2026 Apr 17-22; San Diego, CA. Philadelphia (PA): AACR; Cancer Res 2026;86(7 Suppl):Abstract nr 6006.

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Cite This Study

Gebbia et al. (2026) studied this question.

synapsesocial.com/papers/69d1fd3da79560c99a0a3287https://doi.org/10.1158/1538-7445.am2026-6006
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