Target intelligence / Profile preview

Toll-like receptor 4–Myeloid differentiation factor 2 complex (TLR4–MD-2) (TLR4–MD-2)

Target
TLR4–MD-2
Molecular classification
Receptor, Pattern recognition receptor, Toll-like receptor family
01

Overview

The Toll-like receptor 4–Myeloid differentiation factor 2 (TLR4–MD-2) complex is the primary innate immune sensor for lipopolysaccharide (LPS), a major component of the outer membrane of Gram-negative bacteria [PMID: 19219023]. TLR4 is a transmembrane protein that requires the non-covalently associated extracellular protein MD-2 (also known as LY96) to effectively bind LPS and initiate downstream signaling [UniProt: P33765, Q9Y6Y9]. Upon LPS binding, the TLR4–MD-2 complex undergoes a conformational change leading to the formation of a symmetrical heterodimer, which serves as a platform for intracellular signaling [PMID: 20303873]. This dimerization recruits adapter proteins such as MyD88 and TRIF, ultimately triggering the activation of NF-κB and IRF3 pathways to produce pro-inflammatory cytokines and Type I interferons [PMID: 25735460]. While essential for host defense against pathogens, excessive or dysregulated activation of the TLR4–MD-2 complex is a central driver of septic shock, acute lung injury, and various chronic inflammatory diseases [PMID: 30107140]. In the context of drug development, the complex is targeted by antagonists like Eritoran and TAK-242, which aim to mitigate systemic inflammation in conditions like sepsis [PMID: 23471844]. Conversely, TLR4–MD-2 agonists such as Monophosphoryl lipid A (MPLA) are utilized as potent vaccine adjuvants to enhance the magnitude and quality of the adaptive immune response [PMID: 23865914]. The complex also plays emerging roles in non-infectious pathologies, including neuropathic pain and metabolic syndrome, expanding its relevance as a therapeutic target [PMID: 24035186].

Other names
TLR4/MD-2 complexCD284/LY96 complexToll-like receptor 4/Lymphocyte antigen 96 complexLPS receptor complexTLR4-MD2 heterodimer
02

Mechanism of action

Antagonism of the LPS-binding site on MD-2 or the TLR4 dimerization interface to inhibit pro-inflammatory signaling; or agonism to stimulate immune responses for vaccine efficacy.

03

Biological functions

Immune responseSignal transductionCytokine productionPathogen recognitionInnate immune activation
04

Disease associations

InfectionInflammationSepsisAutoimmune diseaseCancerCardiovascular diseaseMetabolic syndrome
05

Safety considerations

Increased susceptibility to Gram-negative bacterial infectionsPotential for systemic inflammatory response (cytokine storm)Broad immunosuppressionTherapeutic window challenges in acute sepsis
06

Interacting drugs

Eritoran

5 more in the full profile.

07

Biomarkers

Interleukin-6 (IL-6)Tumor necrosis factor-alpha (TNF-alpha)C-reactive protein (CRP)TLR4 surface expression on CD14+ monocytesProcalcitonin

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