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Updated: Jul 6, 2025

Heterokaryon Technique for Analysis of Cell Type-specific Localization
Published on: March 11, 2011
Nuclear pore protein POM121 regulates subcellular localization and transcriptional activity of PPARγ
Yanxiong Yu1, Mohammad S Farooq1,2, Sabine Eberhart Meessen1
1Department of Medicine II, University Medical Center Mannheim, Medical Faculty Mannheim, Heidelberg University, Mannheim, Germany.
Abstract:
Manipulation of the subcellular localization of transcription factors by preventing their shuttling via the nuclear pore complex (NPC) emerges as a novel therapeutic strategy against cancer. One transmembrane component of the NPC is POM121, encoded by a tandem gene locus POM121A/C on chromosome 7. Overexpression of POM121 is associated with metabolic diseases (e.g., diabetes) and unfavorable clinical outcome in patients with colorectal cancer (CRC). Peroxisome proliferator-activated receptor-gamma (PPARγ) is a transcription factor with anti-diabetic and anti-tumoral efficacy. It is inhibited by export from the nucleus to the cytosol via the RAS-RAF-MEK1/2-ERK1/2 signaling pathway, a major oncogenic driver of CRC. We therefore hypothesized that POM121 participates in the transport of PPARγ across the NPC to regulate its transcriptional activity on genes involved in metabolic and tumor control. We found that POM121A/C mRNA was enriched and POM121 protein co-expressed with PPARγ in tissues from CRC patients conferring poor prognosis. Its interactome was predicted to include proteins responsible for tumor metabolism and immunity, and in-silico modeling provided insights into potential 3D structures of POM121. A peptide region downstream of the nuclear localization sequence (NLS) of POM121 was identified as a cytoplasmic interactor of PPARγ. POM121 positivity correlated with the cytoplasmic localization of PPARγ in patients with KRAS mutant CRC. In contrast, POM121A/C silencing by CRISPR/Cas9 sgRNA or siRNA enforced nuclear accumulation of PPARγ and activated PPARγ target genes promoting lipid metabolism and cell cycle arrest resulting in reduced proliferation of human CRC cells. Our data suggest the POM121-PPARγ axis as a potential drugable target in CRC.
Insights
POM121 protein regulates the nuclear export of transcription factor PPARγ, impacting colorectal cancer (CRC) progression. Silencing POM121 increases PPARγ in the nucleus, reducing CRC cell proliferation.
Area of Science:
- Cell Biology
- Molecular Oncology
- Cancer Therapeutics
Background:
- Nuclear pore complex (NPC) protein POM121 is overexpressed in colorectal cancer (CRC) and linked to poor prognosis.
- Peroxisome proliferator-activated receptor-gamma (PPARγ) is a transcription factor with anti-tumoral properties, inhibited by cytoplasmic export in CRC.
Purpose of the Study:
- To investigate the role of POM121 in regulating PPARγ localization and its impact on colorectal cancer (CRC).
- To explore the POM121-PPARγ axis as a potential therapeutic target in CRC.
Main Methods:
- Analysis of POM121 and PPARγ expression in CRC patient tissues.
- In-silico prediction of POM121 interactome and 3D structure.
- Identification of POM121 interaction regions with PPARγ.
- CRISPR/Cas9 and siRNA mediated silencing of POM121A/C in CRC cells.
- Assessment of PPARγ nuclear accumulation and target gene activation.
- Evaluation of cell proliferation rates.
Main Results:
- POM121A/C mRNA and POM121 protein were enriched and co-expressed with PPARγ in poor-prognosis CRC.
- POM121 interacts with PPARγ's nuclear localization sequence (NLS) region, promoting its cytoplasmic localization in KRAS-mutant CRC.
- POM121A/C silencing led to nuclear accumulation of PPARγ, activation of PPARγ target genes, and reduced CRC cell proliferation.
Conclusions:
- The POM121-PPARγ axis plays a critical role in colorectal cancer (CRC) pathogenesis.
- Targeting the POM121-PPARγ interaction represents a promising therapeutic strategy for CRC.
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