Target intelligence / Profile preview

iRhom2 (inactive rhomboid protease homologue 2) (iRhom2)

Target
iRhom2
Molecular classification
Catalytically inactive rhomboid-like protein, Regulatory cofactor, Pseudoprotease
01

Overview

iRhom2 is a catalytically inactive member of the rhomboid-like superfamily that acts as an essential cofactor and regulatory subunit for the metalloprotease TACE (ADAM17). It binds TACE throughout its lifecycle, promoting its exit from the endoplasmic reticulum (ER), maturation in the Golgi, and stabilization at the plasma membrane[1][2][3]. At the cell surface, iRhom2 phosphorylation (e.g., by ERK1/2) and subsequent 14-3-3 binding act as a molecular switch, licensing TACE to shed inflammatory cytokines (notably TNFα) and growth factors (e.g., ligands of the epidermal growth factor receptor)[1][2]. iRhom2 is particularly important in macrophages, where it is the sole regulator of TACE-dependent TNFα release, linking it to inflammation and innate immunity[1][2]. Loss of iRhom2 in mice leads to profound inflammatory defects, increased susceptibility to bacterial infection, and resistance to LPS-induced toxic shock and inflammatory arthritis[1][2]. iRhom2 also regulates innate immunity to DNA viruses by controlling ER-to-Golgi transport of the immune adaptor STING[1]. While iRhom2 is not a direct drug target in current clinical use, it represents a potential node for modulating cytokine and growth factor signaling in inflammatory and immune diseases[1][2].

Other names
iRhom2iRhom-2Rhbdf2 (gene)inactive rhomboid 2
02

Mechanism of action

Not directly applicable (iRhom2 is not an enzyme but a regulatory cofactor). Therapeutic modulation would aim to alter TACE activity at ER export, plasma membrane stabilization, or phosphorylation-dependent activation.

03

Biological functions

Regulates ER-to-Golgi transport and maturation of TACEStabilizes TACE at the plasma membraneControls TACE-dependent ligand sheddingModulates cytokine and growth factor signalingRegulates TNFα releaseModulates innate immune response (e.g., DNA virus defense via STING)Cell signalingInflammationImmune regulation
04

Disease associations

InflammationInflammatory arthritisBacterial infection susceptibilityViral infection susceptibilityCardiovascular diseaseMetabolic diseaseCancer (implied by growth factor signaling modulation)
05

Safety considerations

Systemic inhibition of iRhom2 could impair host defense against infection due to reduced TNFα and cytokine release.As TACE/iRhom2 regulates both inflammatory and growth factor signaling, broad targeting may have pleiotropic effects.
06

Biomarkers

TNFαTGFαamphiregulin (as downstream TACE-shed ligands)iRhom2 phosphorylation status (e.g., ERK1/2-mediated phosphosites)TACE maturation/activity

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