Target intelligence / Profile preview

Tumor necrosis factor superfamily member 4 (OX40 ligand) (OX40L)

Target
OX40L
Molecular classification
Tumor necrosis factor superfamily member, Type II glycoprotein with 23 amino acid cytoplasmic tail and 133 amino acid extracellular domain, Membrane-bound homotrimer assembled via C-terminal TNF homology domain (THD), Receptor ligand, Immune checkpoint molecule, TNF superfamily member
01

Overview

OX40 ligand (OX40L, CD252, TNFSF4) is a type II membrane-bound glycoprotein belonging to the tumor necrosis factor superfamily that serves as a critical costimulatory ligand for the OX40 receptor on activated T cells.[1][3][7] OX40L is constitutively expressed on antigen-presenting cells including dendritic cells, macrophages, and activated B lymphocytes, and functions as a secondary costimulatory signal that enhances T cell activation, survival, proliferation, and memory formation following antigen recognition.[3][7][11] The OX40-OX40L interaction operates as an important immune checkpoint, promoting both Th1 and Th2-mediated immune responses and suppressing regulatory T cell function, making it a dual-use therapeutic target.[7][11] In cancer immunotherapy, agonistic approaches that enhance OX40L-OX40 signaling show promise for amplifying anti-tumor T cell responses,[7][11] while in autoimmune and inflammatory diseases, blocking this interaction has demonstrated efficacy in preclinical models for preventing pathogenic T cell responses.[1][11] The functional form of OX40L is a membrane-bound homotrimer assembled through its TNF homology domain, and engineering the oligomeric architecture of OX40L fusion proteins has proven critical for optimizing its agonistic therapeutic potential.[4][6]

Other names
gp34 (glycoprotein Gp34)TXGP-1CD252TNFSF4
02

Mechanism of action

Agonistic approaches (T cell activation): OX40L binds OX40 receptors on activated T cells, promoting OX40 trimerization. Trimerization recruits TRAF2, 3, and 5 adaptor proteins and activates NF-κB signaling pathway. Enhanced T cell survival, proliferation, cytokine production, and memory formation. Antagonistic approaches (autoimmune/inflammatory suppression): Blocking OX40-OX40L interaction prevents late T cell costimulatory signaling. Prevents development of autoimmune and inflammatory disease in preclinical models.

03

Biological functions

T cell costimulation: OX40L binds to OX40 receptors on activated T cells, providing costimulatory signalsT cell survival: OX40L-OX40 ligation provides survival signals preventing T cell deathMemory T cell development: The interaction enables development and maintenance of memory T cellsImmune response polarization: Signaling through OX40-OX40L leads to polarization towards Th2 immune responseT cell proliferation and differentiation: OX40L signals promote T cell activation, proliferation, and cytotoxicityRegulatory T cell suppression: OX40L-OX40 engagement abrogates regulatory T cell (Treg) immunosuppressive functions
04

Disease associations

Cancer: OX40L engagement enhances anti-tumor T cell responses; agonistic approaches show therapeutic promiseAutoimmune and inflammatory diseases: Blocking OX40-OX40L interaction prevents disease development in animal models; targeting this pathway shows promise for treating exaggerated T cell responsesAllergic diseases: Characterized by exaggerated T cell responses that may be modulated through OX40L blockingSystemic lupus erythematosus (SLE): Single-nucleotide polymorphisms (SNPs) of the OX40L gene have been associated with SLE occurrence
05

Safety considerations

Immunosuppression risk with blocking: Antagonistic approaches that block OX40-OX40L could potentially impair beneficial T cell responsesOff-target activation: Ensuring appropriate targeting to diseased tissues versus healthy immune compartments remains a challengeStructural optimization: Identifying appropriate OX40L presentation (monomeric vs. multimeric forms) is critical for optimizing agonistic versus antagonistic activityComplex signaling context: OX40 can signal independently or synergize with TCR signals, complicating prediction of therapeutic outcomes
06

Interacting drugs

GSK3174998: An anti-OX40 antibody in clinical trials as a cancer treatment

2 more in the full profile.

07

Biomarkers

No specific biomarkers for patient selection or efficacy monitoring are mentioned in the search results, though OX40L expression levels on antigen-presenting cells and OX40 expression on T cells could theoretically serve as pharmacodynamic markers.

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