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. Author manuscript; available in PMC: 2023 Apr 15.
Published in final edited form as: Cell Metab. 2023 Apr 4;35(4):722. doi: 10.1016/j.cmet.2023.03.011

NRF2 activation induces NADH-reductive stress, providing a metabolic vulnerability in lung cancer

Tommy Weiss-Sadan, Maolin Ge *, Makiko Hayashi, Magdy Gohar, Cong-Hui Yao, Adriaan de Groot, Stefan Harry, Alexander Carlin, Hannah Fischer, Lei Shi, Ting-Yu Wei, Charles H Adelmann, Konstantin Wolf, Tristan Vornbäumen, Benedikt R Dürr, Mariko Takahashi, Marianne Richter, Junbing Zhang, Tzu-Yi Yang, Vindhya Vijay, David E Fisher, Aaron N Hata, Marcia C Haigis, Raul Mostoslavsky, Nabeel Bardeesy, Thales Papagiannakopoulos, Liron Bar-Peled *
PMCID: PMC10103906  NIHMSID: NIHMS1884350  PMID: 37019082

In the originally published version of this article, a panel was mistakenly duplicated in Figure 4C. The image was duplicated when we were assembling the figure. This error has been corrected and does not affect the conclusions of the paper. The authors apologize for any confusion that this error may have caused.

Figure 4C.

Figure 4C.

NRF2 induces NADH-reductive stress in KEAP1-dependent cells (corrected)

Footnotes

(Cell Metabolism 35, 487–503.e1–e7; March 7, 2023)

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