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TGFβR-SMAD3 Signaling Induces Resistance to PARP Inhibitors in the Bone Marrow Microenvironment

Authors :
Tomasz Skorski
Katarzyna Piwocka
Peter Valent
Juo-Chin Yao
Margaret Nieborowska-Skorska
Martin S. Tallman
Mark R. Litzow
Jian Huang
Paulina Podszywalow-Bartnicka
Zhaorui Lian
Konstantin Golovine
Julian Swatler
Elisabeth Paietta
Silvia Maifrede
Italo Tempera
Michal Dabrowski
Lisa Beatrice Caruso
Kathy Q. Cai
Daniel C. Link
Bac Viet Le
Grant A. Challen
Ross L. Levine
Reza Nejati
Hugo F. Fernandez
Katherine Sullivan-Reed
Mariusz A. Wasik
Source :
Cell Rep, Cell Reports, Vol 33, Iss 1, Pp 108221-(2020)
Publication Year :
2020

Abstract

Summary: Synthetic lethality triggered by PARP inhibitor (PARPi) yields promising therapeutic results. Unfortunately, tumor cells acquire PARPi resistance, which is usually associated with the restoration of homologous recombination, loss of PARP1 expression, and/or loss of DNA double-strand break (DSB) end resection regulation. Here, we identify a constitutive mechanism of resistance to PARPi. We report that the bone marrow microenvironment (BMM) facilitates DSB repair activity in leukemia cells to protect them against PARPi-mediated synthetic lethality. This effect depends on the hypoxia-induced overexpression of transforming growth factor beta receptor (TGFβR) kinase on malignant cells, which is activated by bone marrow stromal cells-derived transforming growth factor beta 1 (TGF-β1). Genetic and/or pharmacological targeting of the TGF-β1-TGFβR kinase axis results in the restoration of the sensitivity of malignant cells to PARPi in BMM and prolongs the survival of leukemia-bearing mice. Our finding may lead to the therapeutic application of the TGFβR inhibitor in patients receiving PARPis.

Details

ISSN :
22111247
Volume :
33
Issue :
1
Database :
OpenAIRE
Journal :
Cell reports
Accession number :
edsair.doi.dedup.....f5b730b81428cdf33b7a646c0fc7f395