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.

Cross Reference

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
Niemann-Pick Disease, Type C D052556 1 associated lipids
Farber Lipogranulomatosis D055577 1 associated lipids
Sensation Disorders D012678 2 associated lipids
Tachycardia, Sinus D013616 2 associated lipids
Ileus D045823 3 associated lipids
Fabry Disease D000795 4 associated lipids
Hematologic Neoplasms D019337 4 associated lipids
Shock, Hemorrhagic D012771 4 associated lipids
Adenomatous Polyps D018256 4 associated lipids
Ovarian Diseases D010049 5 associated lipids
Dilatation, Pathologic D004108 5 associated lipids
Pregnancy, Ectopic D011271 5 associated lipids
Anemia, Aplastic D000741 6 associated lipids
Teratocarcinoma D018243 7 associated lipids
Rhabdomyosarcoma D012208 7 associated lipids
Eye Abnormalities D005124 7 associated lipids
Multiple Sclerosis, Relapsing-Remitting D020529 7 associated lipids
Peripheral Arterial Disease D058729 7 associated lipids
Mycobacterium Infections, Nontuberculous D009165 8 associated lipids
Thrombocythemia, Essential D013920 9 associated lipids
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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?

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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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Authors Title Published Journal PubMed Link
Radi ZA and Vogel MW Gastric parietal cell atrophy and depletion after administration of a sphingosine-1-phosphate 1 inhibitor. 2014 Toxicol Pathol pmid:24178572
Moxon JV et al. Comparison of the serum lipidome in patients with abdominal aortic aneurysm and peripheral artery disease. 2014 Circ Cardiovasc Genet pmid:24448739
Uhlig S et al. Differential regulation of lung endothelial permeability in vitro and in situ. 2014 Cell. Physiol. Biochem. pmid:24977477
Huang K et al. AP-1 regulates sphingosine kinase 1 expression in a positive feedback manner in glomerular mesangial cells exposed to high glucose. 2014 Cell. Signal. pmid:24342046
Slattum G et al. Autophagy in oncogenic K-Ras promotes basal extrusion of epithelial cells by degrading S1P. 2014 Curr. Biol. pmid:24361067
Chen J et al. Spinster homolog 2 (spns2) deficiency causes early onset progressive hearing loss. 2014 PLoS Genet. pmid:25356849
Degagné E et al. Sphingosine-1-phosphate lyase downregulation promotes colon carcinogenesis through STAT3-activated microRNAs. 2014 J. Clin. Invest. pmid:25347472
Wang F and Ye P Improving heart function by modulating myocardiocyte autophagy: a possible novel mechanism for cardiovascular protection of high-density lipoprotein. 2014 Lipids Health Dis pmid:25339382
Martin R and Sospedra M Sphingosine-1 phosphate and central nervous system. 2014 Curr. Top. Microbiol. Immunol. pmid:24728597
Shayegi N et al. CXCR4 blockade and sphingosine-1-phosphate activation facilitate engraftment of haematopoietic stem and progenitor cells in a non-myeloablative transplant model. 2014 Br. J. Haematol. pmid:24180707
Nguyen AV et al. STAT3 and sphingosine-1-phosphate in inflammation-associated colorectal cancer. 2014 World J. Gastroenterol. pmid:25132744
Deng Y et al. Sphingosine Kinase-1/sphingosine 1-phosphate pathway in diabetic nephropathy. 2014 Chin. Med. J. pmid:25131242
Ogle ME et al. Engineering in vivo gradients of sphingosine-1-phosphate receptor ligands for localized microvascular remodeling and inflammatory cell positioning. 2014 Acta Biomater pmid:25128750
Schwalm S et al. Targeting the sphingosine kinase/sphingosine 1-phosphate pathway to treat chronic inflammatory kidney diseases. 2014 Basic Clin. Pharmacol. Toxicol. pmid:23789924
Arlt O et al. Sphingosine-1-phosphate modulates dendritic cell function: focus on non-migratory effects in vitro and in vivo. 2014 Cell. Physiol. Biochem. pmid:24977479
Simmons S and Ishii M Sphingosine-1-phosphate: a master regulator of lymphocyte egress and immunity. 2014 Arch. Immunol. Ther. Exp. (Warsz.) pmid:24276789
Don AS et al. Re-configuration of sphingolipid metabolism by oncogenic transformation. 2014 Biomolecules pmid:24970218
Zhang J and Song J Amphiphilic degradable polymers for immobilization and sustained delivery of sphingosine 1-phosphate. 2014 Acta Biomater pmid:24631657
Priceman SJ et al. S1PR1 is crucial for accumulation of regulatory T cells in tumors via STAT3. 2014 Cell Rep pmid:24630990
Oizumi A et al. Pseudomonas-derived ceramidase induces production of inflammatory mediators from human keratinocytes via sphingosine-1-phosphate. 2014 PLoS ONE pmid:24586752
Guan Z et al. Sphingosine-1-phosphate evokes unique segment-specific vasoconstriction of the renal microvasculature. 2014 J. Am. Soc. Nephrol. pmid:24578134
Cencetti F et al. Lysophosphatidic acid stimulates cell migration of satellite cells. A role for the sphingosine kinase/sphingosine 1-phosphate axis. 2014 FEBS J. pmid:25131845
Lee H et al. 4-Deoxypyridoxine improves the viability of isolated pancreatic islets ex vivo. 2013 May-Jun Islets pmid:23756681
Egom EE et al. Activation of sphingosine-1-phosphate signalling as a potential underlying mechanism of the pleiotropic effects of statin therapy. 2013 May-Jun Crit Rev Clin Lab Sci pmid:23885725
Ratajczak MZ et al. An emerging link in stem cell mobilization between activation of the complement cascade and the chemotactic gradient of sphingosine-1-phosphate. 2013 Jul-Aug Prostaglandins Other Lipid Mediat. pmid:22981511
Morozov VI et al. Sphingosine-1-phosphate: distribution, metabolism and role in the regulation of cellular functions. 2013 Jan-Feb Ukr Biokhim Zh (1999) pmid:23534286
Das A et al. The promotion of mandibular defect healing by the targeting of S1P receptors and the recruitment of alternatively activated macrophages. 2013 Biomaterials pmid:24064148
Gaveglio VL et al. Phosphatidic acid metabolism in rat liver cell nuclei. 2013 FEBS Lett. pmid:23439070
Cortez-Retamozo V et al. Angiotensin II drives the production of tumor-promoting macrophages. 2013 Immunity pmid:23333075
Ono Y et al. Sphingosine 1-phosphate release from platelets during clot formation: close correlation between platelet count and serum sphingosine 1-phosphate concentration. 2013 Lipids Health Dis pmid:23418753
Takuwa Y et al. Sphingosine-1-phosphate as a mediator involved in development of fibrotic diseases. 2013 Biochim. Biophys. Acta pmid:22735357
Olivera A et al. Shaping the landscape: metabolic regulation of S1P gradients. 2013 Biochim. Biophys. Acta pmid:22735358
Karliner JS Sphingosine kinase and sphingosine 1-phosphate in the heart: a decade of progress. 2013 Biochim. Biophys. Acta pmid:22735359
Kunkel GT et al. Targeting the sphingosine-1-phosphate axis in cancer, inflammation and beyond. 2013 Nat Rev Drug Discov pmid:23954895
Gorshkova IA et al. Inhibition of sphingosine-1-phosphate lyase rescues sphingosine kinase-1-knockout phenotype following murine cardiac arrest. 2013 Life Sci. pmid:23892195
Moriue T et al. Sphingosine 1-phosphate attenuates peroxide-induced apoptosis in HaCaT cells cultured in vitro. 2013 Clin. Exp. Dermatol. pmid:23837937
Adada M et al. Sphingosine-1-phosphate receptor 2. 2013 FEBS J. pmid:23879641
Gao X et al. Aberrant sphingolipid metabolism in the human fallopian tube with ectopic pregnancy. 2013 Lipids pmid:23881382
Goyal P et al. Cytokine IL-6 secretion by trophoblasts regulated via sphingosine-1-phosphate receptor 2 involving Rho/Rho-kinase and Rac1 signaling pathways. 2013 Mol. Hum. Reprod. pmid:23538947
Kager LM et al. Endogenous protein C has a protective role during Gram-negative pneumosepsis (melioidosis). 2013 J. Thromb. Haemost. pmid:23216621
Liang J et al. Sphingosine-1-phosphate links persistent STAT3 activation, chronic intestinal inflammation, and development of colitis-associated cancer. 2013 Cancer Cell pmid:23273921
Jiang LI et al. Regions on adenylyl cyclase VII required for selective regulation by the G13 pathway. 2013 Mol. Pharmacol. pmid:23229509
Park K et al. A novel role of a lipid species, sphingosine-1-phosphate, in epithelial innate immunity. 2013 Mol. Cell. Biol. pmid:23230267
Dusaban SS et al. Phospholipase C epsilon links G protein-coupled receptor activation to inflammatory astrocytic responses. 2013 Proc. Natl. Acad. Sci. U.S.A. pmid:23401561
Cartwright TA et al. Mrp1 is essential for sphingolipid signaling to p-glycoprotein in mouse blood-brain and blood-spinal cord barriers. 2013 J. Cereb. Blood Flow Metab. pmid:23168528
Lotinun S et al. Osteoclast-specific cathepsin K deletion stimulates S1P-dependent bone formation. 2013 J. Clin. Invest. pmid:23321671
Willis MA and Cohen JA Fingolimod therapy for multiple sclerosis. 2013 Semin Neurol pmid:23709211
Tatematsu S et al. Endothelial lipase is a critical determinant of high-density lipoprotein-stimulated sphingosine 1-phosphate-dependent signaling in vascular endothelium. 2013 Arterioscler. Thromb. Vasc. Biol. pmid:23723371
Guo L et al. Sphingosine-1-phosphate inhibits ceramide-induced apoptosis during murine preimplantation embryonic development. 2013 Theriogenology pmid:23731666
Zhang L et al. Sphingosine kinase 2 (Sphk2) regulates platelet biogenesis by providing intracellular sphingosine 1-phosphate (S1P). 2013 Blood pmid:23775711