Telomerase inhibition effectively targets mouse and human AML stem cells and delays relapse following chemotherapy

端粒酶抑制可有效靶向小鼠和人类 AML 干细胞并延缓化疗后的复发

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作者:Claudia Bruedigam, Frederik O Bagger, Florian H Heidel, Catherine Paine Kuhn, Solene Guignes, Axia Song, Rebecca Austin, Therese Vu, Erwin Lee, Sarbjit Riyat, Andrew S Moore, Richard B Lock, Lars Bullinger, Geoffrey R Hill, Scott A Armstrong, David A Williams, Steven W Lane1

Abstract

Acute myeloid leukemia (AML) is an aggressive and lethal blood cancer maintained by rare populations of leukemia stem cells (LSCs). Selective targeting of LSCs is a promising approach for treating AML and preventing relapse following chemotherapy, and developing such therapeutic modalities is a key priority. Here, we show that targeting telomerase activity eradicates AML LSCs. Genetic deletion of the telomerase subunit Terc in a retroviral mouse AML model induces cell-cycle arrest and apoptosis of LSCs, and depletion of telomerase-deficient LSCs is partially rescued by p53 knockdown. Murine Terc(-/-) LSCs express a specific gene expression signature that can be identified in human AML patient cohorts and is positively correlated with patient survival following chemotherapy. In xenografts of primary human AML, genetic or pharmacological inhibition of telomerase targets LSCs, impairs leukemia progression, and delays relapse following chemotherapy. Altogether, these results establish telomerase inhibition as an effective strategy for eliminating AML LSCs.

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