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Nelson CM, Gleghorn JP, Pang M-F, Jaslove JM, Goodwin K, Varner VD, et al. Microfluidic chest cavities reveal that transmural pressure controls the rate of lung development. Development. 2017 ;144(23):4328-4335.
Murray LA, Combs AN, Rekapalli P, Cristea IM. Methods for characterizing protein acetylation during viral infection. Methods Enzymol. 2019 ;626:587-620.
Jang C, Chen L, Rabinowitz JD. Metabolomics and Isotope Tracing. Cell. 2018 ;173(4):822-837.
Estrella MA, Du J, Chen L, Rath S, Prangley E, Chitrakar A, et al. The metabolites NADP and NADPH are the targets of the circadian protein Nocturnin (Curled). Nat Commun. 2019 ;10(1):2367.
Estrella MA, Du J, Chen L, Rath S, Prangley E, Chitrakar A, et al. The metabolites NADP and NADPH are the targets of the circadian protein Nocturnin (Curled). Nat Commun. 2019 ;10(1):2367.
Su X, Lu W, Rabinowitz JD. Metabolite Spectral Accuracy on Orbitraps. Anal Chem. 2017 ;89(11):5940-5948.
Lu W, Su X, Klein MS, Lewis IA, Fiehn O, Rabinowitz JD. Metabolite Measurement: Pitfalls to Avoid and Practices to Follow. Annu Rev Biochem. 2017 ;86:277-304.
Jang C, Hui S, Zeng X, Cowan AJ, Wang L, Chen L, et al. Metabolite Exchange between Mammalian Organs Quantified in Pigs. Cell Metab. 2019 ;30(3):594-606.e3.
Jang C, Hui S, Zeng X, Cowan AJ, Wang L, Chen L, et al. Metabolite Exchange between Mammalian Organs Quantified in Pigs. Cell Metab. 2019 ;30(3):594-606.e3.
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.
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.
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.
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.
Su X, Wellen KE, Rabinowitz JD. Metabolic control of methylation and acetylation. Curr Opin Chem Biol. 2016 ;30:52-60.
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.
Paluch EK, Nelson CM, Biais N, Fabry B, Moeller J, Pruitt BL, et al. Mechanotransduction: use the force(s). BMC Biol. 2015 ;13:47.
Paulick A, Jakovljevic V, Zhang SM, Erickstad M, Groisman A, Meir Y, et al. Mechanism of bidirectional thermotaxis in . Elife. 2017 ;6.
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.
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.
Shi C, Runnels AM, Murphy CT. Mating and male pheromone kill males through distinct mechanisms. Elife. 2017 ;6.
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).
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.
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.
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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.