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Published on: July 28, 2010
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.
Abstract:
Mutations in RNA-binding proteins are increasingly identified in cancers through tumor sequencing and are correlated with disease progression, therapy response, and overall patient outcomes, underscoring the need to study them. Here, we focus on the RNA-binding protein Poly-C binding protein 1 (PCBP1), which binds target RNAs through K-homology (KH) domains to regulate RNA fate. PCBP1 is a tumor suppressor gene and hotspot missense mutations at leucine residues 100 and 102 are observed in colorectal cancer (CRC). PCBP1 mutations have been recurrently reported in CRC genome-wide mutation studies and are associated with poor clinical outcomes; however, their effects on PCBP1 expression and function remain largely unexplored. We show that cancer-associated mutations substituting leucine 100 and 102 with glutamine, proline, or arginine destabilize PCBP1, leading to increased protein turnover. The L100/L102 residues occur at the interface of the RNA-binding KH1 and KH2 domains, and our molecular dynamics simulations show that mutations at these residues disrupt the secondary structure of PCBP1. Additionally, these mutants display increased cytoplasmic localization. Importantly, mutant PCBP1 physically interacts with wild type PCBP1 and suppresses its expression through a dominant-negative mechanism. Together, our data demonstrate that CRC-associated PCBP1 mutations destabilize the protein and act as dominant-negative variants, revealing a novel mechanism of tumor suppressor inactivation in colorectal cancer.
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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