Pathway aberrations of murine melanoma cells observed in Paired-End diTag transcriptomes

Kuo Ping Chiu1, Pramila Ariyaratne, Han Xu

  • 1Genome Institute of Singapore, Genome #02-01, Singapore. chiukp@gis.a-star.edu.sg

BMC Cancer
|June 28, 2007
PubMed
Abstract

Insights

This study reveals that melanoma cells systematically downregulate mitochondrial activity to evade apoptosis and reduce angiogenesis. The Gene Identification Signature Paired End diTag (GIS-PET) approach effectively identified these critical pathway aberrations in melanoma.

Area of Science:

  • Oncology
  • Molecular Biology
  • Bioinformatics

Background:

  • Melanoma is a deadly skin cancer with increasing incidence and poorly understood pathway aberrations.
  • The Gene Identification Signature Paired End diTag (GIS-PET) approach was utilized to investigate melanoma's global pathway alterations.

Purpose of the Study:

  • To characterize global pathway aberrations in melanoma using the GIS-PET approach.
  • To compare the melanoma transcriptome with non-melanoma cells to identify significantly altered pathways.

Main Methods:

  • Employed GIS-PET technology to link 5' and 3' mRNA signatures for sequencing.
  • Annotated paired-end tags (PETs) to KEGG pathways.
  • Compared the murine B16F1 melanoma transcriptome with melanocytes and embryonic stem cells.

Main Results:

  • Melanin biosynthesis genes confirmed the method's feasibility.
  • Significantly altered metabolic pathways included upregulated purine and downregulated oxidative phosphorylation, indicating reduced mitochondrial activity.
  • Mitochondrial permeability was altered, with transcriptional changes in transporters; cell cycle, MAPK, and PI3K/Akt pathways showed limited upregulation; c-Myc and Trp53 expression increased.

Conclusions:

  • Systematic downregulation of mitochondrial activity in melanoma likely reduces apoptosis and angiogenesis dependency.
  • The GIS-PET approach combined with KEGG database analysis is advantageous for systematic pathway analysis.

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