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    Tnfsf14 tumor necrosis factor (ligand) superfamily, member 14 [ Mus musculus (house mouse) ]

    Gene ID: 50930, updated on 9-Dec-2024

    GeneRIFs: Gene References Into Functions

    GeneRIFPubMed TitleDate
    LIGHT/TNFSF14 Affects Adipose Tissue Phenotype.

    LIGHT/TNFSF14 Affects Adipose Tissue Phenotype.
    Oranger A, Colaianni G, Ingravallo G, Scarcella VS, Faienza MF, Grano M, Colucci S, Brunetti G., Free PMC Article

    01/31/2024
    LIGHT/TNFSF14 promotes CAR-T cell trafficking and cytotoxicity through reversing immunosuppressive tumor microenvironment.

    LIGHT/TNFSF14 promotes CAR-T cell trafficking and cytotoxicity through reversing immunosuppressive tumor microenvironment.
    Zhang N, Liu X, Qin J, Sun Y, Xiong H, Lin B, Liu K, Tan B, Zhang C, Huang C, Ren S, Liu M, Du B., Free PMC Article

    11/2/2023
    Tumor Necrosis Factor Superfamily 14 (LIGHT) Restricts Neovascularization by Decreasing Circulating Endothelial Progenitor Cells and Function.

    Tumor Necrosis Factor Superfamily 14 (LIGHT) Restricts Neovascularization by Decreasing Circulating Endothelial Progenitor Cells and Function.
    Hsu CY, Huang CY, Shih CM, Lin YW, Huang PH, Lin SJ, Liu CW, Lin CY, Lin FY., Free PMC Article

    05/5/2023
    LIGHT Amplification by NF-kappaB Contributes to TLR3 Signaling Pathway-Induced Acute Hepatitis.

    LIGHT Amplification by NF-κB Contributes to TLR3 Signaling Pathway-Induced Acute Hepatitis.
    Lai D, Lv Z, Lu X, Shang P, Geng Y, Wang P., Free PMC Article

    01/28/2023
    LIGHT of pulmonary NKT cells annihilates tissue protective alveolar macrophages in augmenting severe influenza pneumonia.

    LIGHT of pulmonary NKT cells annihilates tissue protective alveolar macrophages in augmenting severe influenza pneumonia.
    Shi LN, Zhou Y, Wu C, Huang W, Yuan F, Chen J, Wu Z, Tu W, Chen H, Chen Q, Zhu M, Peng H, Yang Y, Tang H.

    01/28/2023
    The Contribution of LIGHT (TNFSF14) to the Development of Systemic Sclerosis by Modulating IL-6 and T Helper Type 1 Chemokine Expression in Dermal Fibroblasts.

    The Contribution of LIGHT (TNFSF14) to the Development of Systemic Sclerosis by Modulating IL-6 and T Helper Type 1 Chemokine Expression in Dermal Fibroblasts.
    Ikawa T, Ichimura Y, Miyagawa T, Fukui Y, Toyama S, Omatsu J, Awaji K, Norimatsu Y, Watanabe Y, Yoshizaki A, Sato S, Asano Y.

    06/11/2022
    LIGHT/TNFSF14 Promotes Osteolytic Bone Metastases in Non-small Cell Lung Cancer Patients.

    LIGHT/TNFSF14 Promotes Osteolytic Bone Metastases in Non-small Cell Lung Cancer Patients.
    Brunetti G, Belisario DC, Bortolotti S, Storlino G, Colaianni G, Faienza MF, Sanesi L, Alliod V, Buffoni L, Centini E, Voena C, Pulito R, Novello S, Ingravallo G, Rizzi R, Mori G, Reseland JE, Ware CF, Colucci S, Ferracini R, Grano M, Roato I.

    09/18/2021
    LIGHT deficiency aggravates cisplatin-induced acute kidney injury by upregulating mitochondrial apoptosis.

    LIGHT deficiency aggravates cisplatin-induced acute kidney injury by upregulating mitochondrial apoptosis.
    Yang Y, Meng L, Wu S, Li Y, Zhong Y, Xu F, Zhou XC, Li GQ, Xu GL, Peng KF.

    05/29/2021
    LIGHT aggravates sepsis-associated acute kidney injury via TLR4-MyD88-NF-kappaB pathway.

    LIGHT aggravates sepsis-associated acute kidney injury via TLR4-MyD88-NF-κB pathway.
    Zhong Y, Wu S, Yang Y, Li GQ, Meng L, Zheng QY, Li Y, Xu GL, Zhang KQ, Peng KF., Free PMC Article

    05/8/2021
    LIGHT/LTbetaR signaling regulates self-renewal and differentiation of hematopoietic and leukemia stem cells.

    LIGHT/LTβR signaling regulates self-renewal and differentiation of hematopoietic and leukemia stem cells.
    Höpner SS, Raykova A, Radpour R, Amrein MA, Koller D, Baerlocher GM, Riether C, Ochsenbein AF., Free PMC Article

    02/27/2021
    Increased LIGHT expression and activation of non-canonical NF-kappaB are observed in gastric lesions of MyD88-deficient mice upon Helicobacter felis infection.

    Increased LIGHT expression and activation of non-canonical NF-κB are observed in gastric lesions of MyD88-deficient mice upon Helicobacter felis infection.
    Mejías-Luque R, Lozano-Pope I, Wanisch A, Heikenwälder M, Gerhard M, Obonyo M., Free PMC Article

    11/21/2020
    Light protein deficiency in a high-fat high-cholesterol diet improves hepatic glucose tolerance, and reduces hepatic inflammation and non-alcoholic fatty liver disease; this is accompanied by decreased systemic inflammation and adipose tissue cytokine secretion and by changes in the expression of key genes such as Klf6 and Tlr4 involved in NAFLD

    Genetic inactivation of the LIGHT (TNFSF14) cytokine in mice restores glucose homeostasis and diminishes hepatic steatosis.
    Herrero-Cervera A, Vinué Á, Burks DJ, González-Navarro H.

    07/11/2020
    LIGHT stimulation increases OPG levels in B, CD8(+) T, and osteoblastic cells, as well as Wnt10b expression in CD8(+) T cells. The high bone mass in Light and T- and B-cell-deficient mice (Rag(-) /Tnfsf14(-) ) supports the cooperative role of the immune system in bone homeostasis.

    Impairment of Bone Remodeling in LIGHT/TNFSF14-Deficient Mice.
    Brunetti G, Faienza MF, Colaianni G, Gigante I, Oranger A, Pignataro P, Ingravallo G, Di Benedetto A, Bortolotti S, Di Comite M, Storlino G, Lippo L, Ward-Kavanagh L, Mori G, Reseland JE, Passeri G, Schipani E, Tamada K, Ware CF, Colucci S, Grano M.

    10/26/2019
    LIGHT signaling through lymphotoxin beta receptor plays a critical role in the progression of experimental colitis

    The Tumor Necrosis Factor Superfamily Members TNFSF14 (LIGHT), Lymphotoxin β and Lymphotoxin β Receptor Interact to Regulate Intestinal Inflammation.
    Giles DA, Zahner S, Krause P, Van Der Gracht E, Riffelmacher T, Morris V, Tumanov A, Kronenberg M., Free PMC Article

    10/12/2019
    findings identify the LIGHT axis as a regulator of adipose tissue homeostasis and suggest that LIGHT signaling functions as a mechanism to divert energy in favor of immune activation

    LIGHT/TNFSF14 signaling attenuates beige fat biogenesis.
    Kou Y, Liu Q, Liu W, Sun H, Liang M, Kong F, Zhang B, Wei Y, Liu Z, Wang Y.

    10/5/2019
    Mice with a conditional deletion of the LIGHT receptor HVEM (herpesvirus entry mediator) in keratinocytes phenocopied LIGHT-deficient mice in exhibiting reduced epidermal thickening and dermal collagen deposition in a model of atopic dermatitis driven by house dust mite allergen.

    LIGHT-HVEM signaling in keratinocytes controls development of dermatitis.
    Herro R, Shui JW, Zahner S, Sidler D, Kawakami Y, Kawakami T, Tamada K, Kronenberg M, Croft M., Free PMC Article

    04/13/2019
    These results underscore the importance of LIGHT activity in programming memory CD8 T cell development, and suggest that CD8 effector T cells can dictate their own fate into becoming memory cells by expressing LIGHT.

    The TNF Superfamily Molecule LIGHT Promotes the Generation of Circulating and Lung-Resident Memory CD8 T Cells following an Acute Respiratory Virus Infection.
    Desai P, Tahiliani V, Hutchinson TE, Dastmalchi F, Stanfield J, Abboud G, Thomas PG, Ware CF, Song J, Croft M, Salek-Ardakani S., Free PMC Article

    04/6/2019
    bone marrow cells from Tnfsf14 deficient mice appeared to promote diet-induced obesity, insulin resistance and reduced FGF21 levels in white adipose tissue and liver

    Shining LIGHT on the metabolic role of the cytokine TNFSF14 and the implications on hepatic IL-6 production.
    Saunders BM, Rudnicka C, Filipovska A, Davies S, Ward N, Hricova J, Schlaich MP, Matthews VB.

    12/22/2018
    Blockade of LIGHT markedly suppressed airway smooth muscle hyperplasia and inflammatory responses, which might be modulated through HVEM-NFkappaB or c-JUN pathways.

    The Role of TNF Family Molecules Light in Cellular Interaction Between Airway Smooth Muscle Cells and T Cells During Chronic Allergic Inflammation.
    Shi F, Xiong Y, Zhang Y, Qiu C, Li M, Shan A, Yang Y, Li B.

    10/13/2018
    The LIGHT (Tumour necrosis factor ligand superfamily member 14, TNFSF14)/Lymphotoxin beta-Receptor(LTbeta-R) pathway, which is involved in T-cell and macrophage activation, was diminished in plasma and in apoE-/-Irs2+/-HL-/- atheromas.

    Hepatic lipase inactivation decreases atherosclerosis in insulin resistance by reducing LIGHT/Lymphotoxin β-Receptor pathway.
    Andrés-Blasco I, Vinué Á, Herrero-Cervera A, Martínez-Hervás S, Nuñez L, Piqueras L, Ascaso JF, Sanz MJ, Burks DJ, González-Navarro H.

    01/20/2018
    LIGHT promote myeloid differentiation of Hematopoietic stem/progenitor cells via LIGHT receptor signaling.

    Hematopoietic stem/progenitor cell differentiation towards myeloid lineage is modulated by LIGHT/LIGHT receptor signaling.
    Chen W, Lv X, Liu C, Chen R, Liu J, Dai H, Zou GM.

    11/25/2017
    LIGHT signalling pathway combined with IFN-gamma induces beta cells apoptosis via an NF-kappaB/Bcl2-dependent mitochondrial pathway.

    LIGHT/IFN-γ triggers β cells apoptosis via NF-κB/Bcl2-dependent mitochondrial pathway.
    Zheng QY, Cao ZH, Hu XB, Li GQ, Dong SF, Xu GL, Zhang KQ., Free PMC Article

    07/15/2017
    Increasing LIGHT expression increased T-cell proliferation, activation, and infiltration, resulting in enhanced tumor-specific immune-mediated tumor regressions in primary tumors and colorectal liver metastases.

    LIGHT Elevation Enhances Immune Eradication of Colon Cancer Metastases.
    Qiao G, Qin J, Kunda N, Calata JF, Mahmud DL, Gann P, Fu YX, Rosenberg SA, Prabhakar BS, Maker AV., Free PMC Article

    05/13/2017
    Together, these results demonstrate that the LIGHT signaling pathway is not only required for inflammatory cytokine production as part of the host response to chlamydial infection, but also influences the differentiation of CD4(+) CD25(+) FoxP3(+) Treg cells, both of which may be essential for control of C. psittaci respiratory tract infection.

    Deficiency of LIGHT signaling pathway exacerbates Chlamydia psittaci respiratory tract infection in mice.
    Cai H, Chen S, Xu S, Sun Y, Bai Q, Lu C, Chen Y, Fu X, Xu G, Chen L.

    04/8/2017
    These results expose the relevance of LIGHT/LTbetaR/HVEM interaction for the potential therapeutic control of the allogeneic immune responses mediated by alloreactive CD8 T cells that can contribute to prolong allograft survival.

    Immunotherapeutic targeting of LIGHT/LTβR/HVEM pathway fully recapitulates the reduced cytotoxic phenotype of LIGHT-deficient T cells.
    del Rio ML, Fernandez-Renedo C, Chaloin O, Scheu S, Pfeffer K, Shintani Y, Perez-Simon JA, Schneider P, Rodriguez-Barbosa JI., Free PMC Article

    12/17/2016
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