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Sphingomyelin synthase
TITLE PAGE Oxidative Stress and Response to Thymidylate Synthase
Lipid Rafts Activation of a Neutral Sphingomyelinase in T Cells by + and Proliferation of Human CD4 Cholera Toxin B-Subunit Prev
Supplementary Table S4. FGA Co-Expressed Gene List in LUAD
Building a Metabolic Bridge Between Glycolysis and Sphingolipid Biosynthesis : Implications in Cancer
Downloaded from NCBI (Table1)
Sphingomyelin Synthases in Neuropsychiatric Health and Disease
Defining Lipid Mediators of Insulin Resistance: Controversies and Challenges
Dietary Deficiency of Magnesium Up-Regulates Several Notch Proteins
Tales and Mysteries of the Enigmatic Sphingomyelin Synthase Family Joost C.M
Biological Functions of Sphingomyelin Synthase Related Protein and Ceramide Synthase 4 Investigated with Transgenic Mouse Mutants
Identification of Genomic Targets of Krüppel-Like Factor 9 in Mouse Hippocampal
Sphingomyelin Synthase 1 Mediates Hepatocyte Pyroptosis To
Induction of Therapeutic Tissue Tolerance Foxp3 Expression Is
The PKD-Dependent Biogenesis of TGN-To-Plasma Membrane Transport Carriers
Sphingolipids in High Fat Diet and Obesity-Related Diseases
Semi-Automated Curation of Metabolic Models Via Flux Balance Analysis: a Case Study with Mycoplasma Gallisepticum Eddy J
Novel Interconnections in Lipid Metabolism Revealed by Overexpression of Sphingomyelin Synthase-1 Gergana M
Sphingolipids and Mitochondrial Dynamic
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Autocrine IFN Signaling Inducing Profibrotic Fibroblast Responses By
Dietary Sphingomyelin for the Prevention of Diet-Induced Metabolic Dysfunction in Mice" (2018)
Supplemental Figures 04 12 2017
Genome Wide Analysis Identifies Sphingolipid Metabolism As a New Target of Valproic Acid" (2016)
Gallisepticum
Phosphatidylcholine/Sphingomyelin Metabolism Crosstalk Inside the Nucleus Elisabetta Albi, Remo Lazzarini, Mariapia Viola Magni
The Role of Ceramides in Insulin Resistance
Determination of Differential Gene Expression Profiles in Superficial and Deeper Zones of Mature Rat Articular Cartilage Using RNA Sequencing of Laser Microdissected Tissue Specimens
Springer Handbook of Enzymes
Table S-1 Mpkccd Transcriptome
1 Imipramine Treatment and Resiliency Exhibit Similar
Ceramide and Sphingosine-1-Phosphate in Cancer, Two Faces of the Sphinx
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Regulation of Death Receptor Signaling by S-Palmitoylation And
Supplementary Table1. Characteristics of Tumor Samples
Increase of Nuclear Ceramide Through Caspase-3-Dependent Regulation of the “Sphingomyelin Cycle” in Fas-Induced Apoptosis
New Insights Into the Role of Sphingolipid Metabolism in Melanoma
Supplementary File 1
Responsive Nuclear Proteins in Collecting Duct Cells
And Extra-Cellular Modulators of the Transcription Factor NF-Kappab
1 KLF2 and KLF4 Control Endothelial Identity and Vascular Integrity
Mechanisms of Metabolic Reprogramming in Cancer Cells Supporting Enhanced Growth and Proliferation
WO 2017/136652 Al 10 August 2017 (10.08.2017) P O P C T
Sphingolipids: Effectors and Achilles Heals in Viral Infections?
(SMS) in the Malignant Transformation of Glioma Cells and in 2-Hydroxyoleic Acid Therapy
Hnrnp K Co-Immunoprecipitated Transcripts Regulated by BDNF
Supplementary File 2B Revised
Differential Genes Gene ID Log2fold Change Pval Padj Gene Title Symbol Cluster-62068.91323 7.9822 6.52E-42 9.39E-37 Ankyrin Repe
Roles of Ceramide and Sphingolipids in Pancreatic Β-Cell Function and Dysfunction
Sphingomyelin Synthase 2 Affects CD14‑Associated Induction of NF‑Κb by Lipopolysaccharides in Acute Lung Injury in Mice
Srep37829.Pdf
Muscle-Saturated Bioactive Lipids Are Increased with Aging and Influenced by High-Intensity Interval Training
REVIEW Doi:10.1038/Nature13475
Nuclear Lipid Microdomain As Resting Place of Dexamethasone to Impair Cell Proliferation
Activation of Sphingolipid Pathway in the Livers of Lipodystrophic Agpat22/2 Mice