Target intelligence / Profile preview

Inhibitor of DNA binding protein family (ID family) (ID family)

Target
ID family
Molecular classification
Transcription factor, Helix-loop-helix protein, Transcription regulator
01

Overview

The Inhibitor of DNA binding (Id) protein family, consisting of Id1, Id2, Id3, and Id4, are helix-loop-helix (HLH) transcription regulators that lack a DNA-binding domain [1, 2]. They act as dominant-negative inhibitors by heterodimerizing with basic helix-loop-helix (bHLH) transcription factors, such as E-proteins, thereby preventing them from binding to E-box DNA sequences and activating genes required for cell differentiation [2, 4]. While essential for maintaining stem cell populations during embryonic development, Id proteins are typically downregulated in adult tissues [2, 9]. However, their reactivation and overexpression are frequently observed in various malignancies and neovascular diseases, where they drive cell proliferation, survival, angiogenesis, and metastasis [3, 5, 6]. Therapeutic strategies targeting the pan-Id family aim to disrupt these protein-protein interactions, often leading to the ubiquitin-mediated degradation of Id proteins and the restoration of bHLH-mediated differentiation or growth arrest [6, 8]. Small-molecule antagonists like AGX51 have shown promise in preclinical models by inhibiting tumor growth and pathologic ocular neovascularization [6, 14].

Other names
Inhibitor of differentiation proteinsID proteinsClass V helix-loop-helix proteinsInhibitor of DNA binding proteinsId1-4Pan-Id family
02

Mechanism of action

Antagonism of Id-E protein interactions leading to ubiquitin-mediated degradation of Id proteins and restoration of bHLH transcriptional activity.

03

Biological functions

Cell cycle regulationCell differentiation inhibitionCell proliferationAngiogenesisStem cell maintenanceApoptosis regulationCell migration
04

Disease associations

CancerNeovascular diseaseCardiovascular diseaseNeurodevelopmental disorder
05

Safety considerations

Potential toxicity to normal stem cell populationsContext-dependent dual role of ID4 as a tumor suppressor or oncogeneFunctional redundancy between family members (e.g., Id1 and Id3)
06

Interacting drugs

AGX51

7 more in the full profile.

07

Biomarkers

ID1 expressionID4 expressionEndothelial progenitor cell count

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