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March 11, 2003Genes Chromosomes and Cancer216 citations

Fusion of FIG to the receptor tyrosine kinase ROS in a glioblastoma with an interstitial del(6)(q21q21)

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ACAlain CharestKLKeara LaneKMKevin McMahon

Key Points

  • The aim is to explore the significance of the FIG-ROS fusion protein in glioblastoma multiforme.
  • Characterized FIG and ROS genes in normal and U118MG glioblastoma cells.
  • Identified a homozygous deletion of 240 kilobases on chromosome 6q21.
  • Analyzed the resulting FIG-ROS transcript comprised of 7 FIG and 9 ROS exons.
  • Discovered that the FIG-ROS locus encodes an in-frame fusion protein with constitutively active kinase activity.
  • Indicated that FIG-ROS may function as an oncogene in glioblastoma.
  • Noted this as the first instance of a fusion receptor tyrosine kinase protein from a human astrocytoma.

Abstract

The transmembrane proto-oncogene receptor tyrosine kinase (RTK) ROS is an orphan receptor that is aberrantly expressed in neoplasms of the central nervous system. Here, we report the fusion of its carboxy-terminal kinase domain to the amino-terminal portion of a protein called FIG (Fused in Glioblastoma) in a human glioblastoma multiforme (GBM). By characterizing both FIG and ROS genes in normal and in U118MG GBM cells, we determined that an intra-chromosomal homozygous deletion of 240 kilobases on 6q21 is responsible for the formation of the FIG-ROS locus. The FIG-ROS transcript is encoded by 7 FIG exons and 9 ROS-derived exons. We also demonstrate that the FIG-ROS locus encodes for an in-frame fusion protein with a constitutively active kinase activity, suggesting that FIG-ROS may act as an oncogene. This is the first example of a fusion RTK protein that results from an intra-chromosomal deletion, and it represents the first fusion RTK protein isolated from a human astrocytoma.

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Cite This Study

Charest et al. (2003) studied this question.

synapsesocial.com/papers/69d76b7eb1cb92dd1bb8b186https://doi.org/10.1002/gcc.10207
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