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IGFBP2 is a candidate biomarker for Ink4a-Arf status and a therapeutic target for high-grade gliomas

Moore, Lynette M (författare)
MD Andersen Cancer Center
Holmes, Kristen M (författare)
MD Andersen Cancer Center
Smith, Sarah M (författare)
MD Andersen Cancer Center
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Wu, Ying (författare)
MD Andersen Cancer Center
Tchougounova, Elena (författare)
Uppsala universitet,Cancer och vaskulärbiologi,Uhrbom
Uhrbom, Lene (författare)
Uppsala universitet,Cancer och vaskulärbiologi,Uhrbom
Sawaya, Raymond (författare)
MD Andersen Cancer Center
Bruner, Janet M (författare)
MD Andersen Cancer Center
Fuller, Gregory N (författare)
MD Andersen Cancer Center
Zhang, Wei (författare)
MD Andersen Cancer Center
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 (creator_code:org_t)
2009-09-29
2009
Engelska.
Ingår i: Proceedings of the National Academy of Sciences of the United States of America. - : Proceedings of the National Academy of Sciences. - 0027-8424 .- 1091-6490. ; 106:39, s. 16675-16679
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
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  • The levels of insulin-like growth factor-binding protein 2 (IGFBP2) are elevated during progression of many human cancers. By using a glial-specific transgenic mouse system (RCAS/Ntv-a), we reported previously that IGFBP2 is an oncogenic factor for glioma progression in combination with platelet-derived growth factor-beta (PDGFB). Because the INK4a-ARF locus is often deleted in high-grade gliomas (anaplastic oligodendroglioma and glioblastoma), we investigated the effect of the Ink4a-Arf-null background on IGFBP2-mediated progression of PDGFB-initiated oligodendroglioma. We demonstrate here that homozygous deletion of Ink4a-Arf bypasses the requirement of exogenously introduced IGFBP2 for glioma progression. Instead, absence of Ink4a-Arf resulted in elevated endogenous tumor cell IGFBP2. An inverse relationship between p16(INK4a) and IGFBP2 expression was also observed in human glioma tissue samples and in 90 different cancer cell lines by using Western blotting and reverse-phase protein lysate arrays. When endogenous IGFBP2 expression was attenuated by an RCAS vector expressing antisense IGFBP2 in our mouse model, a decreased incidence of anaplastic oligodendroglioma as well as prolonged survival was observed. Thus, p16(INK4a) is a negative regulator of the IGFBP2 oncogene. Loss of Ink4a-Arf results in increased IGFBP2, which contributes to glioma progression, thereby implicating IGFBP2 as a marker and potential therapeutic target for Ink4a-Arf-deleted gliomas.

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