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Watzinger G, Bennett HL. Ceramide Synthase HYL-2 is Required for Neural Preconditioning to Anoxia in Caenorhabditis elegans . MicroPubl Biol 2024 2024
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Chan JP, Brown J, Hark B, Nolan A, Servello D, Hrobuchak H, Staab TA. Loss of Sphingosine Kinase Alters Life History Traits and Locomotor Function in Caenorhabditis elegans. Front Genet 2017 8 132
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Ladage ML, King SD, Burks DJ, Quan DL, Garcia AM, Azad RK, Padilla PA. Glucose or Altered Ceramide Biosynthesis Mediate Oxygen Deprivation Sensitivity Through Novel Pathways Revealed by Transcriptome Analysis in Caenorhabditis elegans. G3 (Bethesda) 2016 6(10) 3149-3160
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Garcia AM, Ladage ML, Dumesnil DR, Zaman K, Shulaev V, Azad RK, Padilla PA. Glucose induces sensitivity to oxygen deprivation and modulates insulin/IGF-1 signaling and lipid biosynthesis in Caenorhabditis elegans. Genetics 2015 200(1) 167-84
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Mosbech MB, Kruse R, Harvald EB, Olsen AS, Gallego SF, Hannibal-Bach HK, Ejsing CS, Færgeman NJ. Functional loss of two ceramide synthases elicits autophagy-dependent lifespan extension in C. elegans. PLoS One 2013 8(7) e70087
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Menuz V, Howell KS, Gentina S, Epstein S, Riezman I, Fornallaz-Mulhauser M, Hengartner MO, Gomez M, Riezman H, Martinou JC. Protection of C. elegans from anoxia by HYL-2 ceramide synthase. Science 2009 324(5925) 381-4
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