U.S. flag

An official website of the United States government

Format

Send to:

Choose Destination
    • Showing Current items.

    S1PR3 sphingosine-1-phosphate receptor 3 [ Homo sapiens (human) ]

    Gene ID: 1903, updated on 18-Sep-2024

    GeneRIFs: Gene References Into Functions

    GeneRIFPubMed TitleDate
    SphK1 deficiency ameliorates the development of atherosclerosis by inhibiting the S1P/S1PR3/Rhoa/ROCK pathway.

    SphK1 deficiency ameliorates the development of atherosclerosis by inhibiting the S1P/S1PR3/Rhoa/ROCK pathway.
    Piao J, Su Z, He J, Zhu T, Fan F, Wang X, Yang Z, Zhan H, Luo D.

    08/1/2024
    Sphingosine-1-phosphate receptor 3 regulates the transendothelial transport of high-density lipoproteins and low-density lipoproteins in opposite ways.

    Sphingosine-1-phosphate receptor 3 regulates the transendothelial transport of high-density lipoproteins and low-density lipoproteins in opposite ways.
    Velagapudi S, Wang D, Poti F, Feuerborn R, Robert J, Schlumpf E, Yalcinkaya M, Panteloglou G, Potapenko A, Simoni M, Rohrer L, Nofer JR, von Eckardstein A., Free PMC Article

    05/10/2024
    Extracellular alpha-synuclein impairs sphingosine 1-phosphate receptor type 3 (S1PR3)-regulated lysosomal delivery of cathepsin D in HeLa cells.

    Extracellular α-synuclein impairs sphingosine 1-phosphate receptor type 3 (S1PR3)-regulated lysosomal delivery of cathepsin D in HeLa cells.
    Nishida S, Matovelo SA, Kajimoto T, Nakamura SI, Okada T.

    03/6/2024
    Sphingosine 1-Phosphate Activates S1PR3 to Induce a Proinflammatory Phenotype in Human Myometrial Cells.

    Sphingosine 1-Phosphate Activates S1PR3 to Induce a Proinflammatory Phenotype in Human Myometrial Cells.
    Saurabh K, Mbadhi MN, Prifti KK, Martin KT, Frolova AI., Free PMC Article

    05/25/2023
    Targeting SPHK1/S1PR3-regulated S-1-P metabolic disorder triggers autophagic cell death in pulmonary lymphangiomyomatosis (LAM).

    Targeting SPHK1/S1PR3-regulated S-1-P metabolic disorder triggers autophagic cell death in pulmonary lymphangiomyomatosis (LAM).
    Li F, Zhang Y, Lin Z, Yan L, Liu Q, Li Y, Pei X, Feng Y, Han X, Yang J, Zheng F, Li T, Zhang Y, Fu Z, Shao D, Yu J, Li C., Free PMC Article

    01/14/2023
    The lncRNA H19/miR-766-3p/S1PR3 Axis Contributes to the Hyperproliferation of Keratinocytes and Skin Inflammation in Psoriasis via the AKT/mTOR Pathway.

    The lncRNA H19/miR-766-3p/S1PR3 Axis Contributes to the Hyperproliferation of Keratinocytes and Skin Inflammation in Psoriasis via the AKT/mTOR Pathway.
    He Y, Yin X, Yan J, Li X, Sun Q., Free PMC Article

    04/9/2022
    Sphingosine-1-phosphate receptor 3 potentiates inflammatory programs in normal and leukemia stem cells to promote differentiation.

    Sphingosine-1-phosphate receptor 3 potentiates inflammatory programs in normal and leukemia stem cells to promote differentiation.
    Xie SZ, Kaufmann KB, Wang W, Chan-Seng-Yue M, Gan OI, Laurenti E, Garcia-Prat L, Takayanagi SI, Ng SWK, Xu C, Zeng AGX, Jin L, McLeod J, Wagenblast E, Mitchell A, Kennedy JA, Liu Q, Boutzen H, Kleinau M, Jargstorf J, Holmes G, Zhang Y, Voisin V, Bader GD, Wang JCY, Hannun YA, Luberto C, Schroeder T, Minden MD, Dick JE., Free PMC Article

    03/19/2022
    Sphingosine-1-phosphate receptor 3 is implicated in BBB injury via the CCL2-CCR2 axis following acute intracerebral hemorrhage.

    Sphingosine-1-phosphate receptor 3 is implicated in BBB injury via the CCL2-CCR2 axis following acute intracerebral hemorrhage.
    Xu D, Gao Q, Wang F, Peng Q, Wang G, Wei Q, Lei S, Zhao S, Zhang L, Guo F., Free PMC Article

    02/5/2022
    EGR2-mediated regulation of m(6)A reader IGF2BP proteins drive RCC tumorigenesis and metastasis via enhancing S1PR3 mRNA stabilization.

    EGR2-mediated regulation of m(6)A reader IGF2BP proteins drive RCC tumorigenesis and metastasis via enhancing S1PR3 mRNA stabilization.
    Ying Y, Ma X, Fang J, Chen S, Wang W, Li J, Xie H, Wu J, Xie B, Liu B, Wang X, Zheng X, Xie L., Free PMC Article

    01/29/2022
    Intracellular Sphingosine-1-Phosphate Receptor 3 Contributes to Lung Tumor Cell Proliferation.

    Intracellular Sphingosine-1-Phosphate Receptor 3 Contributes to Lung Tumor Cell Proliferation.
    Terlizzi M, Colarusso C, Ferraro G, Monti MC, Rosa I, Somma P, Salvi R, Pinto A, Sorrentino R.

    10/9/2021
    Divergence of Intracellular Trafficking of Sphingosine Kinase 1 and Sphingosine-1-Phosphate Receptor 3 in MCF-7 Breast Cancer Cells and MCF-7-Derived Stem Cell-Enriched Mammospheres.

    Divergence of Intracellular Trafficking of Sphingosine Kinase 1 and Sphingosine-1-Phosphate Receptor 3 in MCF-7 Breast Cancer Cells and MCF-7-Derived Stem Cell-Enriched Mammospheres.
    Sukocheva OA, Hu DG, Meech R, Bishayee A., Free PMC Article

    05/22/2021
    S1PR3 deficiency alleviates radiation-induced pulmonary fibrosis through the regulation of epithelial-mesenchymal transition by targeting miR-495-3p.

    S1PR3 deficiency alleviates radiation-induced pulmonary fibrosis through the regulation of epithelial-mesenchymal transition by targeting miR-495-3p.
    Gong L, Wu X, Li X, Ni X, Gu W, Wang X, Ji H, Hu L, Zhu L.

    12/19/2020
    Overexpression of Sphingosine Kinase-1 and Sphingosine-1-Phosphate Receptor-3 in Severe Plasmodium falciparum Malaria with Pulmonary Edema.

    Overexpression of Sphingosine Kinase-1 and Sphingosine-1-Phosphate Receptor-3 in Severe Plasmodium falciparum Malaria with Pulmonary Edema.
    Viriyavejakul P, Punsawad C., Free PMC Article

    12/5/2020
    Hyperglycemia-Triggered Sphingosine-1-Phosphate and Sphingosine-1-Phosphate Receptor 3 Signaling Worsens Liver Ischemia/Reperfusion Injury by Regulating M1/M2 Polarization.

    Hyperglycemia-Triggered Sphingosine-1-Phosphate and Sphingosine-1-Phosphate Receptor 3 Signaling Worsens Liver Ischemia/Reperfusion Injury by Regulating M1/M2 Polarization.
    Hu Y, Yang C, Shen G, Yang S, Cheng X, Cheng F, Rao J, Wang X., Free PMC Article

    08/22/2020
    This study demonstrated that S1P significantly promotes angiogenesis, inflammation, and barrier integrity, which was attenuated by inhibition of S1P2 or S1P3, suggesting that regulation of S1P2 and S1P3 is a novel therapeutic target for CNV.

    The role of sphingosine 1-phosphate receptors on retinal pigment epithelial cells barrier function and angiogenic effects.
    Terao R, Honjo M, Totsuka K, Miwa Y, Kurihara T, Aihara M.

    07/4/2020
    High expression of S1PR3 is associated with bladder transitional cell carcinoma.

    Differential expression of S1P receptor subtypes in human bladder transitional cell carcinoma.
    Palangi A, Shakhssalim N, Parvin M, Bayat S, Allameh A.

    01/11/2020
    these findings argue that HDL promotes angiogenesis via S1P3-dependent up-regulation and activation of VEGFR2 and also suggest that the S1P-S1P3-VEGFR2 signaling cascades as a novel target for HDL-modulating therapy implicated in vascular remodeling

    High-density lipoprotein (HDL) promotes angiogenesis via S1P3-dependent VEGFR2 activation.
    Jin F, Hagemann N, Sun L, Wu J, Doeppner TR, Dai Y, Hermann DM.

    10/26/2019
    S1P induced the expression of some asthma-related genes, such as ADRB2, PTGER4, and CCL20, in bronchial epithelial cells. The knock-down of SIPR3 suppressed the expression of S1P-inducing CCL20.

    Role of S1P/S1PR3 axis in release of CCL20 from human bronchial epithelial cells.
    Kawa Y, Nagano T, Yoshizaki A, Dokuni R, Katsurada M, Terashita T, Yasuda Y, Umezawa K, Yamamoto M, Kamiryo H, Kobayashi K, Nishimura Y., Free PMC Article

    03/2/2019
    Reactive astrocytic S1P3 signaling modulates the blood-tumor barrier in brain metastases.

    Reactive astrocytic S1P3 signaling modulates the blood-tumor barrier in brain metastases.
    Gril B, Paranjape AN, Woditschka S, Hua E, Dolan EL, Hanson J, Wu X, Kloc W, Izycka-Swieszewska E, Duchnowska R, Pęksa R, Biernat W, Jassem J, Nayyar N, Brastianos PK, Hall OM, Peer CJ, Figg WD, Pauly GT, Robinson C, Difilippantonio S, Bialecki E, Metellus P, Schneider JP, Steeg PS., Free PMC Article

    12/22/2018
    Authors found that elevated levels of pSphK1 were positive correlation with high expression of S1P, which in turn promoted metastasis of TNBC through S1P/S1PR3/Notch signaling pathway.

    Triple Negative Breast Cancer Depends on Sphingosine Kinase 1 (SphK1)/Sphingosine-1-Phosphate (S1P)/Sphingosine 1-Phosphate Receptor 3 (S1PR3)/Notch Signaling for Metastasis.
    Wang S, Liang Y, Chang W, Hu B, Zhang Y., Free PMC Article

    09/8/2018
    Sphingosine-1-phosphate receptor 3 (S1PR3) mediates multiple aspects of the inflammatory response during sepsis.

    S1PR3 Signaling Drives Bacterial Killing and Is Required for Survival in Bacterial Sepsis.
    Hou J, Chen Q, Wu X, Zhao D, Reuveni H, Licht T, Xu M, Hu H, Hoeft A, Ben-Sasson SA, Shu Q, Fang X.

    12/30/2017
    in breast cancer cells overexpression of S1P3 and its activation by S1P has pro-inflammatory and pro-metastatic potential by inducing COX-2 expression and PGE2 signaling via EP2 and EP4.

    Upregulation of the S1P(3) receptor in metastatic breast cancer cells increases migration and invasion by induction of PGE(2) and EP(2)/EP(4) activation.
    Filipenko I, Schwalm S, Reali L, Pfeilschifter J, Fabbro D, Huwiler A, Zangemeister-Wittke U.

    11/4/2017
    S1PR1/3 silencing alters proliferation, adhesion, viability and lateral motility in estrogen receptor-negative MCF-7 and estrogen receptor-positive MDA-MB-231 breast cancer cells.

    Effects of S1P1 and S1P3 in ER(+) and ER(-) Breast Cancer Cells.
    Calis IU, Cosan DT, Mutlu F.

    10/21/2017
    High S1PR3 expression is associated with increased lung adenocarcinoma.

    TGF-β/SMAD3 Pathway Stimulates Sphingosine-1 Phosphate Receptor 3 Expression: IMPLICATION OF SPHINGOSINE-1 PHOSPHATE RECEPTOR 3 IN LUNG ADENOCARCINOMA PROGRESSION.
    Zhao J, Liu J, Lee JF, Zhang W, Kandouz M, VanHecke GC, Chen S, Ahn YH, Lonardo F, Lee MJ., Free PMC Article

    07/22/2017
    The S1P1,3 activation results in Akt phosphorylation and subsequent activation of eNOS via phosphorylation at serine(1177) and dephosphorylation at threonine(495).

    Regulation of endothelial nitric oxide synthase activation in endothelial cells by S1P1 and S1P3.
    Tölle M, Klöckl L, Wiedon A, Zidek W, van der Giet M, Schuchardt M.

    05/27/2017
    firstprevious page of 3 nextlast