Colorectal cancer-associated PCBP1 mutations disrupt protein stability in a dominant negative manner

Paige V Blinkiewicz1,2, Nicole C Hoenes2, Myra X Afzal3

  • 1Dartmouth Cancer Center, Lebanon NH.

Insights

Colorectal cancer mutations in Poly-C binding protein 1 (PCBP1) destabilize the protein, leading to its reduced levels. These mutant PCBP1 proteins then suppress the function of normal PCBP1, driving tumor growth.

Area of Science:

  • Molecular Biology
  • Cancer Research
  • Genomics

Background:

  • Mutations in RNA-binding proteins are linked to cancer progression and patient outcomes.
  • Poly-C binding protein 1 (PCBP1) is a tumor suppressor gene involved in RNA regulation.
  • Specific hotspot missense mutations in PCBP1 (L100/L102) are found in colorectal cancer (CRC).

Purpose of the Study:

  • To investigate the functional impact of CRC-associated PCBP1 mutations.
  • To understand the mechanism by which PCBP1 mutations contribute to colorectal cancer development.

Main Methods:

  • Analysis of protein stability and turnover for wild-type and mutant PCBP1.
  • Molecular dynamics simulations to assess structural changes.
  • Cellular localization studies (cytoplasmic vs. nuclear).
  • Co-immunoprecipitation assays to study protein interactions.

Main Results:

  • Cancer-associated PCBP1 mutations (L100Q, L100P, L100R, L102Q, L102P, L102R) destabilize the PCBP1 protein, increasing its turnover.
  • Mutations disrupt the secondary structure at the KH1-KH2 domain interface and alter subcellular localization.
  • Mutant PCBP1 interacts with wild-type PCBP1 and inhibits its expression via a dominant-negative effect.

Conclusions:

  • CRC-associated PCBP1 mutations lead to protein destabilization and dominant-negative inhibition of wild-type PCBP1.
  • This represents a novel mechanism of tumor suppressor inactivation in colorectal cancer.
  • Understanding these mechanisms can inform future therapeutic strategies for CRC.

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