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Published on: February 11, 2020
Reconstructing the molecular life history of gliomas
Floris P Barthel1,2, Pieter Wesseling3,4, Roel G W Verhaak5
1The Jackson Laboratory for Genomic Medicine, Farmington, CT, 06030, USA. floris.barthel@gmail.com.
Abstract:
At the time of their clinical manifestation, the heterogeneous group of adult and pediatric gliomas carries a wide range of diverse somatic genomic alterations, ranging from somatic single-nucleotide variants to structural chromosomal rearrangements. Somatic abnormalities may have functional consequences, such as a decrease, increase or change in mRNA transcripts, and cells pay a penalty for maintaining them. These abnormalities, therefore, must provide cells with a competitive advantage to become engrained into the glioma genome. Here, we propose a model of gliomagenesis consisting of the following five consecutive phases that glioma cells have traversed prior to clinical manifestation: (I) initial growth; (II) oncogene-induced senescence; (III) stressed growth; (IV) replicative senescence/crisis; (V) immortal growth. We have integrated the findings from a large number of studies in biology and (neuro)oncology and relate somatic alterations and other results discussed in these papers to each of these five phases. Understanding the story that each glioma tells at presentation may ultimately facilitate the design of novel, more effective therapeutic approaches.
Insights
This study proposes a five-phase model for glioma development, detailing how genomic alterations provide a competitive advantage for tumor cells to progress from initial growth to immortal growth, aiding therapeutic design.
Area of Science:
- Neuro-oncology
- Genomics
- Cancer Biology
Background:
- Gliomas exhibit diverse somatic genomic alterations at clinical manifestation.
- Maintaining these alterations incurs a cellular penalty, suggesting a selective advantage is conferred.
Purpose of the Study:
- To propose a five-phase model of gliomagenesis.
- To integrate existing research findings into this model.
- To relate somatic alterations to specific phases of glioma development.
Main Methods:
- Literature review and integration of findings from biology and neuro-oncology studies.
- Relating somatic alterations to a proposed five-phase model of gliomagenesis.
Main Results:
- A five-phase model of gliomagenesis is proposed: initial growth, oncogene-induced senescence, stressed growth, replicative senescence/crisis, and immortal growth.
- Somatic genomic alterations are linked to the progression through these phases.
Conclusions:
- Understanding the progression of glioma through these phases can inform the development of novel therapeutic strategies.
- The proposed model provides a framework for interpreting the genomic landscape of gliomas at presentation.
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