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Wooldridge AL, Bischof RJ, Liu H, Heinemann GK, Hunter DS, Giles LC, et al. Late-gestation maternal dietary methyl donor and cofactor supplementation in sheep partially reverses protection against allergic sensitization by IUGR. Am J Physiol Regul Integr Comp Physiol. 2018 ;314(1):R22-R33.
Chen L, Ducker GS, Lu W, Teng X, Rabinowitz JD. An LC-MS chemical derivatization method for the measurement of five different one-carbon states of cellular tetrahydrofolate. Anal Bioanal Chem. 2017 ;409(25):5955-5964.
Okuda S, Sherman DJ, Silhavy TJ, Ruiz N, Kahne D. Lipopolysaccharide transport and assembly at the outer membrane: the PEZ model. Nat Rev Microbiol. 2016 ;14(6):337-45.
Shin Y, Chang Y-C, Lee DSW, Berry J, Sanders DW, Ronceray P, et al. Liquid Nuclear Condensates Mechanically Sense and Restructure the Genome. Cell. 2018 ;175(6):1481-1491.e13.
Kim HYoung, Pang M-F, Varner VD, Kojima L, Miller E, Radisky DC, et al. Localized Smooth Muscle Differentiation Is Essential for Epithelial Bifurcation during Branching Morphogenesis of the Mammalian Lung. Dev Cell. 2015 ;34(6):719-26.
Zhuo W, Liu Y, Li S, Guo D, Sun Q, Jin J, et al. Long Noncoding RNA GMAN, Up-regulated in Gastric Cancer Tissues, Is Associated With Metastasis in Patients and Promotes Translation of Ephrin A1 by Competitively Binding GMAN-AS. Gastroenterology. 2019 ;156(3):676-691.e11.
Reece SY, Seyedsayamdost MR. Long-range proton-coupled electron transfer in the class Ia ribonucleotide reductase. Essays Biochem. 2017 ;61(2):281-292.
Rubinstein BY, Mattingly HH, Berezhkovskii AM, Shvartsman SY. Long-term dynamics of multisite phosphorylation. Mol Biol Cell. 2016 ;27(14):2331-40.
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.
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.
Chikina MD, Gerald CP, Li X, Ge Y, Pincas H, Nair VD, et al. Low-variance RNAs identify Parkinson's disease molecular signature in blood. Mov Disord. 2015 ;30(6):813-21.
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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.
Liu L, Shah S, Fan J, Park JO, Wellen KE, Rabinowitz JD. Malic enzyme tracers reveal hypoxia-induced switch in adipocyte NADPH pathway usage. Nat Chem Biol. 2016 ;12(5):345-52.
Klaus JR, Deay J, Neuenswander B, Hursh W, Gao Z, Bouddhara T, et al. Malleilactone Is a Burkholderia pseudomallei Virulence Factor Regulated by Antibiotics and Quorum Sensing. J Bacteriol. 2018 ;200(14).
Shi C, Runnels AM, Murphy CT. Mating and male pheromone kill males through distinct mechanisms. Elife. 2017 ;6.
Ortega-Esteban A, Condezo GN, Pérez-Berná AJ, Chillón M, S Flint J, Reguera D, et al.. Mechanics of Viral Chromatin Reveals the Pressurization of Human Adenovirus. ACS Nano. 2015 ;9(11):10826-33.
Lembong J, Sabass B, Sun B, Rogers ME, Stone HA. Mechanics regulates ATP-stimulated collective calcium response in fibroblast cells. J R Soc Interface. 2015 ;12(108):20150140.
Paulick A, Jakovljevic V, Zhang SM, Erickstad M, Groisman A, Meir Y, et al. Mechanism of bidirectional thermotaxis in . Elife. 2017 ;6.
Paluch EK, Nelson CM, Biais N, Fabry B, Moeller J, Pruitt BL, et al. Mechanotransduction: use the force(s). BMC Biol. 2015 ;13:47.
Smith JA, Hall AE, Rose MD. Membrane curvature directs the localization of Cdc42p to novel foci required for cell-cell fusion. J Cell Biol. 2017 ;216(12):3971-3980.
Su X, Wellen KE, Rabinowitz JD. Metabolic control of methylation and acetylation. Curr Opin Chem Biol. 2016 ;30:52-60.
Watson E, Olin-Sandoval V, Hoy MJ, Li C-H, Louisse T, Yao V, et al. Metabolic network rewiring of propionate flux compensates vitamin B12 deficiency in C. elegans. Elife. 2016 ;5.
Li AM, Ducker GS, Li Y, Seoane JA, Xiao Y, Melemenidis S, et al. Metabolic Profiling Reveals a Dependency of Human Metastatic Breast Cancer on Mitochondrial Serine and One-Carbon Unit Metabolism. Mol Cancer Res. 2020 ;18(4):599-611.
Li AM, Ducker GS, Li Y, Seoane JA, Xiao Y, Melemenidis S, et al. Metabolic Profiling Reveals a Dependency of Human Metastatic Breast Cancer on Mitochondrial Serine and One-Carbon Unit Metabolism. Mol Cancer Res. 2020 ;18(4):599-611.
Park JO, Rubin SA, Xu Y-F, Amador-Noguez D, Fan J, Shlomi T, et al. Metabolite concentrations, fluxes and free energies imply efficient enzyme usage. Nat Chem Biol. 2016 ;12(7):482-9.