Integrative assessment of CIP2A overexpression and mutational effects in human malignancies identifies possible

Mohammad M Tarek1, Ahmed Yahia2, Mostafa M El-Nakib3

  • 1Bioinformatics Department, Armed Forces College of Medicine (AFCM) Cairo, Egypt.

Insights

Cancerous inhibitor of PP2A (CIP2A) is overexpressed in most cancers and linked to poor survival. Genetic variants in CIP2A

Area of Science:

  • Oncology
  • Genetics
  • Bioinformatics

Background:

  • The KIAA1524 gene encodes cancerous inhibitor of PP2A (CIP2A), a protein overexpressed in 65%-90% of human cancers.
  • CIP2A overexpression correlates with cancer progression, aggressiveness, poor survival, and chemotherapy resistance.
  • CIP2A is a potential novel target for cancer therapy.

Purpose of the Study:

  • To conduct a pan-cancer analysis of CIP2A expression and its association with patient survival.
  • To identify non-coding variants in the 5'UTR and 3'UTR regions associated with CIP2A overexpression.
  • To investigate the functional impact of identified variants and their potential therapeutic implications.

Main Methods:

  • Pan-cancer analysis of public gene expression datasets.
  • Annotation and scoring of 5'UTR and 3'UTR variants using RegulomeDB and Enformer.
  • Analysis of linkage disequilibrium, eQTL, MuTarget, and protein structure for variant impact.
  • Enrichment analysis of the CIP2A regulatory gene network.

Main Results:

  • CIP2A was significantly upregulated in cancerous and metastatic tissues, correlating with poor patient survival.
  • Specific 5'UTR variants (rs1239349555, rs1576326380, rs1231839144) and 3'UTR variants (rs56255137, rs58758610) were predicted as key regulators of CIP2A overexpression.
  • Somatic TP53 mutations were associated with upregulated CIP2A, and several missense SNPs were predicted to be deleterious.
  • The Wnt/β-catenin pathway was enriched in the CIP2A regulatory network, suggesting therapeutic targets.

Conclusions:

  • CIP2A overexpression is a significant pan-cancer event associated with adverse outcomes.
  • Identified non-coding variants and TP53 mutations may contribute to CIP2A dysregulation.
  • Targeting the Wnt/β-catenin pathway, potentially with FTY720, may offer novel therapeutic strategies for CIP2A-driven cancers.