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PSPC1 is a new contextual determinant of aberrant subcellular translocation of oncogenes in tumor progression
1Institute of Biomedical Sciences, Academia Sinica, 11529, Taipei, Taiwan.
Abstract:
Dysregulation of nucleocytoplasmic shuttling is commonly observed in cancers and emerging as a cancer hallmark for the development of anticancer therapeutic strategies. Despite its severe adverse effects, selinexor, a selective first-in-class inhibitor of the common nuclear export receptor XPO1, was developed to target nucleocytoplasmic protein shuttling and received accelerated FDA approval in 2019 in combination with dexamethasone as a fifth-line therapeutic option for adults with relapsed refractory multiple myeloma (RRMM). To explore innovative targets in nucleocytoplasmic shuttling, we propose that the aberrant contextual determinants of nucleocytoplasmic shuttling, such as PSPC1 (Paraspeckle component 1), TGIF1 (TGF-β Induced Factor Homeobox 1), NPM1 (Nucleophosmin), Mortalin and EBP50, that modulate shuttling (or cargo) proteins with opposite tumorigenic functions in different subcellular locations could be theranostic targets for developing anticancer strategies. For instance, PSPC1 was recently shown to be the contextual determinant of the TGF-β prometastatic switch and PTK6/β-catenin reciprocal oncogenic nucleocytoplasmic shuttling during hepatocellular carcinoma (HCC) progression. The innovative nucleocytoplasmic shuttling inhibitor PSPC1 C-terminal 131 polypeptide (PSPC1-CT131), which was developed to target both the shuttling determinant PSPC1 and the shuttling protein PTK6, maintained their tumor-suppressive characteristics and exhibited synergistic effects on tumor suppression in HCC cells and mouse models. In summary, targeting the contextual determinants of nucleocytoplasmic shuttling with cargo proteins having opposite tumorigenic functions in different subcellular locations could be an innovative strategy for developing new therapeutic biomarkers and agents to improve cancer therapy.
Insights
Targeting nucleocytoplasmic shuttling proteins like PSPC1 offers a novel anticancer strategy. Inhibiting PSPC1 and PTK6 synergistically suppressed tumor growth in hepatocellular carcinoma models.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Nucleocytoplasmic shuttling dysregulation is a cancer hallmark.
- Selinexor, an XPO1 inhibitor, targets this pathway but has severe side effects.
- Identifying new targets in nucleocytoplasmic shuttling is crucial for cancer therapy.
Purpose of the Study:
- To explore aberrant contextual determinants of nucleocytoplasmic shuttling as theranostic targets.
- To investigate PSPC1 as a key determinant in hepatocellular carcinoma (HCC) progression.
- To develop novel anticancer agents targeting these determinants.
Main Methods:
- Proposed targeting of contextual determinants like PSPC1, TGIF1, NPM1, Mortalin, and EBP50.
- Investigated PSPC1's role in TGF-β signaling and PTK6/β-catenin shuttling in HCC.
- Developed and tested the PSPC1 C-terminal 131 polypeptide (PSPC1-CT131) inhibitor.
Main Results:
- PSPC1 was identified as a determinant of the prometastatic TGF-β switch in HCC.
- PSPC1-CT131 targeted both PSPC1 and PTK6.
- PSPC1-CT131 demonstrated synergistic tumor-suppressive effects in HCC cells and mouse models.
Conclusions:
- Targeting contextual determinants of nucleocytoplasmic shuttling is an innovative anticancer strategy.
- These determinants, modulating proteins with opposing functions, represent potential theranostic targets.
- This approach may lead to new therapeutic biomarkers and agents for improved cancer therapy.
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