GLS-driven glutamine catabolism contributes to prostate cancer radiosensitivity by regulating the redox state, stemness and ATG5-mediated autophagy
Anna Mukha, Uǧur Kahya, Annett Linge, Oleg Chen, Steffen Löck, Vasyl Lukiyanchuk, Susan Richter, Tiago C. Alves, Mirko Peitzsch, Vladyslav Telychko, Sergej Skvortsov, Giulia Negro, Bertram Aschenbrenner, Ira Ida Skvortsova, Peter Mirtschink, Fabian Lohaus, Tobias Hölscher, Hans Neubauer, Mahdi Rivandi, Vera LabitzkyTobias Lange, André Franken, Bianca Behrens, Nikolas H. Stoecklein, Marieta Toma, Ulrich Sommer, Sebastian Zschaeck, Maximilian Rehm, Graeme Eisenhofer, Christian Schwager, Amir Abdollahi, Christer Groeben, Leoni A. Kunz-Schughart, Gustavo B. Baretton, Michael Baumann, Mechthild Krause, Claudia Peitzsch*, Anna Dubrovska*
*Corresponding author for this work
Research output: Contribution to journal › Article › Research › peer-review
97Citations
(Scopus)
Fingerprint
Dive into the research topics of 'GLS-driven glutamine catabolism contributes to prostate cancer radiosensitivity by regulating the redox state, stemness and ATG5-mediated autophagy'. Together they form a unique fingerprint.