Sphingosine 1-phosphate

Sphingosine 1-phosphate is a lipid of Sphingolipids (SP) class. Sphingosine 1-phosphate is associated with abnormalities such as Infection, Painful Bladder Syndrome, Atherosclerosis, Hyperglycemia and Rheumatoid Arthritis. The involved functions are known as Phosphorylation, Regulation, enzyme activity, Energy Absorption and Vascular Permeability. Sphingosine 1-phosphate often locates in Endothelium, Tissue membrane, Vascular System, Protoplasm and Microfilaments. The associated genes with Sphingosine 1-phosphate are MBTPS1 gene, FBXL15 gene, TEK gene, NTRK1 gene and Gene Family. The related lipids are Promega, Lipopolysaccharides, lysophosphatidic acid, Lysophosphatidylcholines and Lysophospholipids. The related experimental models are Knock-out, Mouse Model, Transgenic Model, Disease model and Experimental Autoimmune Encephalomyelitis.

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Introduction

To understand associated biological information of Sphingosine 1-phosphate, we collected biological information of abnormalities, associated pathways, cellular/molecular locations, biological functions, related genes/proteins, lipids and common seen animal/experimental models with organized paragraphs from literatures.

What diseases are associated with Sphingosine 1-phosphate?

Sphingosine 1-phosphate is suspected in Lymphopenia, Ischemia, Infection, Atherosclerosis, Multiple Sclerosis, Asthma and other diseases in descending order of the highest number of associated sentences.

Related references are mostly published in these journals:

Disease Cross reference Weighted score Related literature
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Possible diseases from mapped MeSH terms on references

We collected disease MeSH terms mapped to the references associated with Sphingosine 1-phosphate

MeSH term MeSH ID Detail
Pregnancy, Ectopic D011271 5 associated lipids
Prostatic Neoplasms D011471 126 associated lipids
Proteinuria D011507 30 associated lipids
Psoriasis D011565 47 associated lipids
Pulmonary Edema D011654 23 associated lipids
Pulmonary Fibrosis D011658 24 associated lipids
Respiratory Distress Syndrome, Adult D012128 15 associated lipids
Retinal Detachment D012163 10 associated lipids
Rhabdomyosarcoma D012208 7 associated lipids
Sarcoma 180 D012510 21 associated lipids
Sensation Disorders D012678 2 associated lipids
Shock, Hemorrhagic D012771 4 associated lipids
Tachycardia, Sinus D013616 2 associated lipids
Thrombocythemia, Essential D013920 9 associated lipids
Thrombocytopenia D013921 15 associated lipids
Thyroid Neoplasms D013964 33 associated lipids
Tuberculosis D014376 20 associated lipids
Vascular Diseases D014652 16 associated lipids
Reperfusion Injury D015427 65 associated lipids
Weight Gain D015430 101 associated lipids
Per page 10 20 50 100 | Total 101

PubChem Associated disorders and diseases

What pathways are associated with Sphingosine 1-phosphate

Lipid pathways are not clear in current pathway databases. We organized associated pathways with Sphingosine 1-phosphate through full-text articles, including metabolic pathways or pathways of biological mechanisms.

Related references are published most in these journals:

Pathway name Related literatures
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PubChem Biomolecular Interactions and Pathways

Link to PubChem Biomolecular Interactions and Pathways

What cellular locations are associated with Sphingosine 1-phosphate?

Related references are published most in these journals:

Location Cross reference Weighted score Related literatures
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What functions are associated with Sphingosine 1-phosphate?


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Function Cross reference Weighted score Related literatures

What lipids are associated with Sphingosine 1-phosphate?

Related references are published most in these journals:

Lipid concept Cross reference Weighted score Related literatures
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What genes are associated with Sphingosine 1-phosphate?

Related references are published most in these journals:


Gene Cross reference Weighted score Related literatures

What common seen animal models are associated with Sphingosine 1-phosphate?

Knock-out

Knock-out are used in the study 'Sphingosine 1-phosphate-dependent trafficking of peritoneal B cells requires functional NFkappaB-inducing kinase in stromal cells.' (Kunisawa J et al., 2008), Knock-out are used in the study 'Connective tissue growth factor (CTGF/CCN2) mediates angiogenic effect of S1P in human dermal microvascular endothelial cells.' (Markiewicz M et al., 2011), Knock-out are used in the study 'Chasing sphingosine-1-phosphate, a lipid mediator for cardiomyocyte survival.' (Yang Q, 2007), Knock-out are used in the study 'Local application of FTY720 to the lung abrogates experimental asthma by altering dendritic cell function.' (Idzko M et al., 2006) and Knock-out are used in the study 'Platelet endothelial cell adhesion molecule-1 modulates endothelial cell motility through the small G-protein Rho.' (Gratzinger D et al., 2003).

Mouse Model

Mouse Model are used in the study 'Regulation of the micromechanical properties of pulmonary endothelium by S1P and thrombin: role of cortactin.' (Arce FT et al., 2008), Mouse Model are used in the study 'Sequential delivery of vascular endothelial growth factor and sphingosine 1-phosphate for angiogenesis.' (Tengood JE et al., 2010), Mouse Model are used in the study 'S1P(5) is required for sphingosine 1-phosphate-induced autophagy in human prostate cancer PC-3 cells.' (Chang CL et al., 2009), Mouse Model are used in the study 'Sphingosine-1-phosphate induces an antiinflammatory phenotype in macrophages.' (Hughes JE et al., 2008) and Mouse Model are used in the study 'The alliance of sphingosine-1-phosphate and its receptors in immunity.' (Rivera J et al., 2008).

Transgenic Model

Transgenic Model are used in the study 'Role for matrix metalloproteinase-2 in oxidized low-density lipoprotein-induced activation of the sphingomyelin/ceramide pathway and smooth muscle cell proliferation.' (Augé N et al., 2004), Transgenic Model are used in the study 'Sphingosine-1-phosphate antibodies as potential agents in the treatment of cancer and age-related macular degeneration.' (Sabbadini RA, 2011) and Transgenic Model are used in the study 'Still benched on its way to the bedside: sphingosine kinase 1 as an emerging target in cancer chemotherapy.' (Gault CR and Obeid LM, 2011).

Related references are published most in these journals:

Model Cross reference Weighted score Related literatures
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NCBI Entrez Crosslinks

All references with Sphingosine 1-phosphate

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Per page 10 20 50 100 | Total 2896
Authors Title Published Journal PubMed Link
De Luca T et al. NAD+/NADH and/or CoQ/CoQH2 ratios from plasma membrane electron transport may determine ceramide and sphingosine-1-phosphate levels accompanying G1 arrest and apoptosis. 2005 Biofactors pmid:16873929
Perez GI et al. A central role for ceramide in the age-related acceleration of apoptosis in the female germline. 2005 FASEB J. pmid:15728664
Ikeda M et al. Sphingolipid-to-glycerophospholipid conversion in SPL-null cells implies the existence of an alternative isozyme. 2005 Biochem. Biophys. Res. Commun. pmid:15737611
Yabu T et al. Thalidomide-induced antiangiogenic action is mediated by ceramide through depletion of VEGF receptors, and is antagonized by sphingosine-1-phosphate. 2005 Blood pmid:15741222
Kee TH et al. Sphingosine kinase signalling in immune cells. 2005 Clin. Exp. Pharmacol. Physiol. pmid:15743396
Suomalainen L et al. Sphingosine-1-phosphate inhibits nuclear factor kappaB activation and germ cell apoptosis in the human testis independently of its receptors. 2005 Am. J. Pathol. pmid:15743789
Pilorget A et al. Inhibition of angiogenic properties of brain endothelial cells by platelet-derived sphingosine-1-phosphate. 2005 J. Cereb. Blood Flow Metab. pmid:15829917
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Church LD et al. TNFR1-induced sphingomyelinase activation modulates TCR signaling by impairing store-operated Ca2+ influx. 2005 J. Leukoc. Biol. pmid:15817701
Tamama K et al. High-density lipoprotein inhibits migration of vascular smooth muscle cells through its sphingosine 1-phosphate component. 2005 Atherosclerosis pmid:15585196
Zhang B et al. Correlation of high density lipoprotein (HDL)-associated sphingosine 1-phosphate with serum levels of HDL-cholesterol and apolipoproteins. 2005 Atherosclerosis pmid:15585219
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Fieger CB et al. Type 1 sphingosine 1-phosphate G protein-coupled receptor signaling of lymphocyte functions requires sulfation of its extracellular amino-terminal tyrosines. 2005 FASEB J. pmid:16148028
van Meeteren LA et al. Inhibition of autotaxin by lysophosphatidic acid and sphingosine 1-phosphate. 2005 J. Biol. Chem. pmid:15769751
Shida D et al. Lysophospholipids transactivate HER2/neu (erbB-2) in human gastric cancer cells. 2005 Biochem. Biophys. Res. Commun. pmid:15649431
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McVerry BJ and Garcia JG In vitro and in vivo modulation of vascular barrier integrity by sphingosine 1-phosphate: mechanistic insights. 2005 Cell. Signal. pmid:15494205
Waters CM et al. c-Src is involved in regulating signal transmission from PDGFbeta receptor-GPCR(s) complexes in mammalian cells. 2005 Cell. Signal. pmid:15494217
Butter JJ et al. A rapid and validated HPLC method to quantify sphingosine 1-phosphate in human plasma using solid-phase extraction followed by derivatization with fluorescence detection. 2005 J. Chromatogr. B Analyt. Technol. Biomed. Life Sci. pmid:16023899
Maguire JJ and Davenport AP Regulation of vascular reactivity by established and emerging GPCRs. 2005 Trends Pharmacol. Sci. pmid:16054240
Yopp AC et al. Sphingosine 1-phosphate receptors regulate chemokine-driven transendothelial migration of lymph node but not splenic T cells. 2005 J. Immunol. pmid:16116177
Czeloth N et al. Sphingosine-1-phosphate mediates migration of mature dendritic cells. 2005 J. Immunol. pmid:16116182
Minnear FL et al. Sphingosine 1-phosphate prevents platelet-activating factor-induced increase in hydraulic conductivity in rat mesenteric venules: pertussis toxin sensitive. 2005 Am. J. Physiol. Heart Circ. Physiol. pmid:15778280
Hsiao SH et al. Effects of exogenous sphinganine, sphingosine, and sphingosine-1-phosphate on relaxation and contraction of porcine thoracic aortic and pulmonary arterial rings. 2005 Toxicol. Sci. pmid:15829618
Geoffroy K et al. Glomerular proliferation during early stages of diabetic nephropathy is associated with local increase of sphingosine-1-phosphate levels. 2005 FEBS Lett. pmid:15710421
Budnik LT and Brunswig-Spickenheier B Differential effects of lysolipids on steroid synthesis in cells expressing endogenous LPA2 receptor. 2005 J. Lipid Res. pmid:15716590
Takashiro Y et al. Involvement of p38 MAP kinase-mediated cytochrome c release on sphingosine-1-phosphate (S1P)- and N-monomethyl-S1P-induced cell death of PC12 cells. 2005 Biochem. Pharmacol. pmid:15907808
Halin C et al. The S1P-analog FTY720 differentially modulates T-cell homing via HEV: T-cell-expressed S1P1 amplifies integrin activation in peripheral lymph nodes but not in Peyer patches. 2005 Blood pmid:15870184
Takeshita A et al. Sphingosine 1-phosphate acts as a signal molecule in ceramide signal transduction of TNF-alpha-induced activator protein-1 in osteoblastic cell line MC3T3-E1 cells. 2005 J Oral Sci pmid:15881228
Yin Z and Watsky MA Chloride channel activity in human lung fibroblasts and myofibroblasts. 2005 Am. J. Physiol. Lung Cell Mol. Physiol. pmid:15681397
Sauer B et al. Sphingosine 1-phosphate is involved in cytoprotective actions of calcitriol in human fibroblasts and enhances the intracellular Bcl-2/Bax rheostat. 2005 Pharmazie pmid:15881612
Ma Y et al. Sphingosine activates protein kinase A type II by a novel cAMP-independent mechanism. 2005 J. Biol. Chem. pmid:15883165
Radeke HH et al. Overlapping signaling pathways of sphingosine 1-phosphate and TGF-beta in the murine Langerhans cell line XS52. 2005 J. Immunol. pmid:15728487
Kim JW et al. Synthesis and evaluation of sphingoid analogs as inhibitors of sphingosine kinases. 2005 Bioorg. Med. Chem. pmid:15848761
Kawata T et al. Sphingosine 1-phosphate inhibits migration and RANTES production in human bronchial smooth muscle cells. 2005 Biochem. Biophys. Res. Commun. pmid:15850807
Pfaff M et al. Activation of the SPHK/S1P signalling pathway is coupled to muscarinic receptor-dependent regulation of peripheral airways. 2005 Respir. Res. pmid:15927078
Petrache I et al. Ceramide upregulation causes pulmonary cell apoptosis and emphysema-like disease in mice. 2005 Nat. Med. pmid:15852018
Mastrandrea LD et al. Sphingosine kinase activity and sphingosine-1 phosphate production in rat pancreatic islets and INS-1 cells: response to cytokines. 2005 Diabetes pmid:15855330
Segura BJ et al. Sphingosine-1-phosphate induces early response gene expression in C6 glioma cells. 2005 Brain Res. Mol. Brain Res. pmid:15710251
Kim KS et al. GPR4 plays a critical role in endothelial cell function and mediates the effects of sphingosylphosphorylcholine. 2005 FASEB J. pmid:15857892
Pettus BJ et al. The coordination of prostaglandin E2 production by sphingosine-1-phosphate and ceramide-1-phosphate. 2005 Mol. Pharmacol. pmid:15900018
Katsuma S et al. Transcriptional regulation of connective tissue growth factor by sphingosine 1-phosphate in rat cultured mesangial cells. 2005 FEBS Lett. pmid:15862293
Yin F and Watsky MA LPA and S1P increase corneal epithelial and endothelial cell transcellular resistance. 2005 Invest. Ophthalmol. Vis. Sci. pmid:15914605
Wu WT et al. Lysophospholipids enhance matrix metalloproteinase-2 expression in human endothelial cells. 2005 Endocrinology pmid:15878967
Long J et al. Regulation of cell survival by lipid phosphate phosphatases involves the modulation of intracellular phosphatidic acid and sphingosine 1-phosphate pools. 2005 Biochem. J. pmid:15960610
Malchinkhuu E et al. Role of p38 mitogen-activated kinase and c-Jun terminal kinase in migration response to lysophosphatidic acid and sphingosine-1-phosphate in glioma cells. 2005 Oncogene pmid:16007180