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Yang L, TeSlaa T, Ng S, Nofal M, Wang L, Lan T, et al. Ketogenic diet and chemotherapy combine to disrupt pancreatic cancer metabolism and growth. Med (N Y). 2022 ;3(2):119-136.
García-Cañaveras JC, Heo D, Trefely S, Leferovich J, Xu C, Philipson BI, et al.. CAR T-Cells Depend on the Coupling of NADH Oxidation with ATP Production. Cells. 2021 ;10(9).
McReynolds MR, Chellappa K, Chiles E, Jankowski C, Shen Y, Chen L, et al. NAD flux is maintained in aged mice despite lower tissue concentrations. Cell Syst. 2021 ;12(12):1160-1172.e4.
Chini CCS, Peclat TR, Warner GM, Kashyap S, Espindola-Netto JMachado, de Oliveira GC, et al. CD38 ecto-enzyme in immune cells is induced during aging and regulates NAD and NMN levels. Nat Metab. 2020 ;2(11):1284-1304.
Yang L, Canaveras JCarlos Gar, Chen Z, Wang L, Liang L, Jang C, et al. Serine Catabolism Feeds NADH when Respiration Is Impaired. Cell Metab. 2020 ;31(4):809-821.e6.
Luongo TS, Eller JM, Lu M-J, Niere M, Raith F, Perry C, et al. SLC25A51 is a mammalian mitochondrial NAD transporter. Nature. 2020 ;588(7836):174-179.
Minhas PS, Liu L, Moon PK, Joshi AU, Dove C, Mhatre S, et al. Macrophage de novo NAD synthesis specifies immune function in aging and inflammation. Nat Immunol. 2019 ;20(1):50-63.
Lu W, Wang L, Chen L, Hui S, Rabinowitz JD. Extraction and Quantitation of Nicotinamide Adenine Dinucleotide Redox Cofactors. Antioxid Redox Signal. 2018 ;28(3):167-179.
Davila A, Liu L, Chellappa K, Redpath P, Nakamaru-Ogiso E, Paolella LM, et al. Nicotinamide adenine dinucleotide is transported into mammalian mitochondria. Elife. 2018 ;7.
Liu L, Su X, Quinn WJ, Hui S, Krukenberg K, Frederick DW, et al. Quantitative Analysis of NAD Synthesis-Breakdown Fluxes. Cell Metab. 2018 ;27(5):1067-1080.e5.
Habrian C, Chandrasekhara A, Shahrvini B, Hua B, Lee J, Jesinghaus R, et al. Inhibition of Escherichia coli CTP Synthetase by NADH and Other Nicotinamides and Their Mutual Interactions with CTP and GTP. Biochemistry. 2016 ;55(39):5554-5565.
Frederick DW, Loro E, Liu L, Davila A, Chellappa K, Silverman IM, et al. Loss of NAD Homeostasis Leads to Progressive and Reversible Degeneration of Skeletal Muscle. Cell Metab. 2016 ;24(2):269-82.
Hoff KG, Avalos JL, Sens K, Wolberger C. Insights into the sirtuin mechanism from ternary complexes containing NAD+ and acetylated peptide. Structure. 2006 ;14(8):1231-40.