TP53 mutated glioblastoma stem-like cell cultures are sensitive to dual mTORC1/2 inhibition while resistance in TP53 wild type cultures can be overcome by combined inhibition of mTORC1/2 and Bcl-2

TP53 突变的胶质母细胞瘤干细胞样细胞培养物对双重 mTORC1/2 抑制敏感,而 TP53 野生型培养物中的抗性可通过联合抑制 mTORC1/2 和 Bcl-2 来克服

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作者:Subramanian Venkatesan, Marlous Hoogstraat, Ester Caljouw, Tessa Pierson, Jochem K H Spoor, Lona Zeneyedpour, Hendrikus J Dubbink, Lennard J Dekker, Mariëlle van der Kaaij, Jenneke Kloezeman, Lotte M E Berghauser Pont, Nicolle J M Besselink, Theo M Luider, Jos Joore, John W Martens, Martine L M Lamf

Background

Glioblastoma is the most malignant tumor of the central nervous system and still lacks effective treatment. This study explores mutational biomarkers of 11 drugs targeting either the RTK/Ras/PI3K, the p53 or the Rb pathway using 25 patient-derived glioblastoma stem-like cell cultures (GSCs).

Conclusion

Our data suggest that Bcl-2 confers resistance to mTORC1/2 inhibitors in TP53 wild type GSCs and that combined inhibition of both mTORC1/2 and Bcl-2 is worthwhile to explore further in TP53 wild type glioblastomas, whereas in TP53 mutated glioblastomas dual mTORC1/2 inhibitors should be explored.

Results

We found that TP53 mutated GSCs were approximately 3.5 fold more sensitive to dual inhibition of mammalian target of rapamycin complex 1 and 2 (mTORC1/2) compared to wild type GSCs. We identified that Bcl-2(Thr56/Ser70) phosphorylation contributed to the resistance of TP53 wild type GSCs against dual mTORC1/2 inhibition. The Bcl-2 inhibitor ABT-263 (navitoclax) increased sensitivity to the mTORC1/2 inhibitor AZD8055 in TP53 wild type GSCs, while sensitivity to AZD8055 in TP53 mutated GSCs remained unchanged.

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