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March 17, 2024Cancers6 citationsOpen Access

PIP4K2B Protein Regulation by NSD1 in HPV-Negative Head and Neck Squamous Cell Carcinoma

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ITIuliia TopchuIBIgor BychkovEREkaterina Roshchina

Key Points

  • PIP4K2B is directly upregulated by histone methyltransferase NSD1 via H3K36me2, sustaining tumor cell growth across head and neck squamous cell carcinoma models.
  • Depletion of PIP4K2B downregulates the downstream mTOR pathway, while its overexpression rescues growth specifically in laryngeal cancer cells rather than tongue cells.
  • Reverse Phase Protein Array analysis coupled with in vitro functional validation was used to profile downstream targets of NSD1 across head and neck cancer cell models.
  • Highlights PIP4K2B as a promising context-dependent therapeutic target in laryngeal cancer, though findings remain limited to in vitro cell culture models.

Abstract

Head and neck squamous cell carcinoma (HNSCC) ranks among the most prevalent global cancers. Despite advancements in treatments, the five-year survival rate remains at approximately 66%. The histone methyltransferase NSD1, known for its role in catalyzing histone H3 lysine 36 di-methylation (H3K36me2), emerges as a potential oncogenic factor in HNSCC. Our study, employing Reverse Phase Protein Array (RPPA) analysis and subsequent validation, reveals that PIP4K2B is a key downstream target of NSD1. Notably, PIP4K2B depletion in HNSCC induces downregulation of the mTOR pathway, resulting in diminished cell growth in vitro. Our investigation highlights a direct, positive regulatory role of NSD1 on PIP4K2B gene transcription through an H3K36me2-dependent mechanism. Importantly, the impact of PIP4K2B appears to be context-dependent, with overexpression rescuing cell growth in laryngeal HNSCC cells but not in tongue/hypopharynx cells. In conclusion, our findings implicate PIP4K2B as a novel NSD1-dependent protein in HNSCC, suggesting its potential significance for laryngeal cancer cell survival. This insight contributes to our understanding of the molecular landscape in HNSCC and establishes PIP4KB as a promising target for drug development.

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Cite This Study

Topchu et al. (2024) studied this question.

synapsesocial.com/papers/68e73a87b6db6435876b41d3https://doi.org/10.3390/cancers16061180
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