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  • Author: Mao C
  • References

Author: Mao C


References 26 references


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  • Yi JK, et al. (2022) Alkaline ceramidase catalyzes the hydrolysis of ceramides via a catalytic mechanism shared by Zn2+-dependent amidases. PLoS One 17(9):e0271540 PMID:36048828
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  • Xu R, et al. (2021) Alkaline ceramidase family: The first two decades. Cell Signal 78:109860 PMID:33271224
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  • Edvardson S, et al. (2016) Deficiency of the alkaline ceramidase ACER3 manifests in early childhood by progressive leukodystrophy. J Med Genet 53(6):389-96 PMID:26792856
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  • Yi JK, et al. (2016) Aging-related elevation of sphingoid bases shortens yeast chronological life span by compromising mitochondrial function. Oncotarget 7(16):21124-44 PMID:27008706
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  • Wang Z, et al. (2014) Rice SPX1 and SPX2 inhibit phosphate starvation responses through interacting with PHR2 in a phosphate-dependent manner. Proc Natl Acad Sci U S A 111(41):14953-8 PMID:25271318
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  • Brown CR, et al. (2013) Linking stochastic fluctuations in chromatin structure and gene expression. PLoS Biol 11(8):e1001621 PMID:23940458
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  • Brown CR, et al. (2011) In vivo role for the chromatin-remodeling enzyme SWI/SNF in the removal of promoter nucleosomes by disassembly rather than sliding. J Biol Chem 286(47):40556-65 PMID:21979950
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  • Mao C, et al. (2011) Occlusion of regulatory sequences by promoter nucleosomes in vivo. PLoS One 6(3):e17521 PMID:21408617
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  • Mao C, et al. (2010) Quantitative analysis of the transcription control mechanism. Mol Syst Biol 6:431 PMID:21081924
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  • Aerts AM, et al. (2008) Ydc1p ceramidase triggers organelle fragmentation, apoptosis and accelerated ageing in yeast. Cell Mol Life Sci 65(12):1933-42 PMID:18500447
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  • Galadari S, et al. (2006) Identification of a novel amidase motif in neutral ceramidase. Biochem J 393(Pt 3):687-95 PMID:16229686
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  • Obeid LM, et al. (2002) Yeast sphingolipids: metabolism and biology. Biochim Biophys Acta 1585(2-3):163-71 PMID:12531550
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  • Boujaoude LC, et al. (2001) Cystic fibrosis transmembrane regulator regulates uptake of sphingoid base phosphates and lysophosphatidic acid: modulation of cellular activity of sphingosine 1-phosphate. J Biol Chem 276(38):35258-64 PMID:11443135
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  • Chung N, et al. (2001) Phytosphingosine as a specific inhibitor of growth and nutrient import in Saccharomyces cerevisiae. J Biol Chem 276(38):35614-21 PMID:11468289
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  • Mao C, et al. (2001) Cloning and characterization of a novel human alkaline ceramidase. A mammalian enzyme that hydrolyzes phytoceramide. J Biol Chem 276(28):26577-88 PMID:11356846
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  • Mao C, et al. (2001) Crystal structure of Bruton's tyrosine kinase domain suggests a novel pathway for activation and provides insights into the molecular basis of X-linked agammaglobulinemia. J Biol Chem 276(44):41435-43 PMID:11527964
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  • Mao C and Obeid LM (2000) Yeast sphingosine-1-phosphate phosphatases: assay, expression, deletion, purification, and cellular localization by GFP tagging. Methods Enzymol 311:223-32 PMID:10563329
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  • Mao C, et al. (2000) Cloning and characterization of a Saccharomyces cerevisiae alkaline ceramidase with specificity for dihydroceramide. J Biol Chem 275(40):31369-78 PMID:10900202
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  • Mao C, et al. (2000) Cloning of an alkaline ceramidase from Saccharomyces cerevisiae. An enzyme with reverse (CoA-independent) ceramide synthase activity. J Biol Chem 275(10):6876-84 PMID:10702247
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  • Sawai H, et al. (2000) Identification of ISC1 (YER019w) as inositol phosphosphingolipid phospholipase C in Saccharomyces cerevisiae. J Biol Chem 275(50):39793-8 PMID:11006294
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  • Guo WX, et al. (1999) A disrupted homologue of the human CLN3 or juvenile neuronal ceroid lipofuscinosis gene in Saccharomyces cerevisiae: a model to study Batten disease. Cell Mol Neurobiol 19(5):671-80 PMID:10384264
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  • Mao C, et al. (1999) The dihydrosphingosine-1-phosphate phosphatases of Saccharomyces cerevisiae are important regulators of cell proliferation and heat stress responses. Biochem J 342 Pt 3(Pt 3):667-75 PMID:10477278
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  • Mao C, et al. (1998) Calf spleen purine nucleoside phosphorylase complexed with substrates and substrate analogues. Biochemistry 37(20):7135-46 PMID:9585525
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  • Zhou M, et al. (1998) Crystallization and preliminary diffraction analysis of a hyperthermostable DNA polymerase from a Thermococcus archaeon. Acta Crystallogr D Biol Crystallogr 54(Pt 5):994-5 PMID:9757117
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  • Jenkins GM, et al. (1997) Involvement of yeast sphingolipids in the heat stress response of Saccharomyces cerevisiae. J Biol Chem 272(51):32566-72 PMID:9405471
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  • Mao C, et al. (1997) Identification and characterization of Saccharomyces cerevisiae dihydrosphingosine-1-phosphate phosphatase. J Biol Chem 272(45):28690-4 PMID:9353337
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