AI Article Synopsis

  • Chronic myelogenous leukemia (CML) features high levels of immature myeloid cells, and this study investigates the coexpression patterns of genes regulated by key transcription factors E2F1-3 and MYC, comparing normal and CML states.
  • A new method was developed to classify gene pairs based on their coexpression levels, revealing distinct differences between normal and CML groups, particularly in genes associated with cell adhesion and angiogenesis.
  • The findings enhance understanding of CML mechanisms and could inform future cancer treatment strategies.

Article Abstract

Background: Chronic myelogenous leukemia (CML) is characterized by tremendous amount of immature myeloid cells in the blood circulation. E2F1-3 and MYC are important transcription factors that form positive feedback loops by reciprocal regulation in their own transcription processes. Since genes regulated by E2F1-3 or MYC are related to cell proliferation and apoptosis, we wonder if there exists difference in the coexpression patterns of genes regulated concurrently by E2F1-3 and MYC between the normal and the CML states.

Results: We proposed a method to explore the difference in the coexpression patterns of those candidate target genes between the normal and the CML groups. A disease-specific cutoff point for coexpression levels that classified the coexpressed gene pairs into strong and weak coexpression classes was identified. Our developed method effectively identified the coexpression pattern differences from the overall structure. Moreover, we found that genes related to the cell adhesion and angiogenesis properties were more likely to be coexpressed in the normal group when compared to the CML group.

Conclusion: Our findings may be helpful in exploring the underlying mechanisms of CML and provide useful information in cancer treatment.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4142389PMC
http://dx.doi.org/10.1155/2014/439840DOI Listing

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