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Published on: August 19, 2025
The Id-protein family in developmental and cancer-associated pathways
Cornelia Roschger1, Chiara Cabrele2
1Department of Molecular Biology, University of Salzburg, Billrothstrasse 11, Salzburg, 5020, Austria.
Abstract:
Inhibitors of DNA binding and cell differentiation (Id) proteins are members of the large family of the helix-loop-helix (HLH) transcription factors, but they lack any DNA-binding motif. During development, the Id proteins play a key role in the regulation of cell-cycle progression and cell differentiation by modulating different cell-cycle regulators both by direct and indirect mechanisms. Several Id-protein interacting partners have been identified thus far, which belong to structurally and functionally unrelated families, including, among others, the class I and II bHLH transcription factors, the retinoblastoma protein and related pocket proteins, the paired-box transcription factors, and the S5a subunit of the 26 S proteasome. Although the HLH domain of the Id proteins is involved in most of their protein-protein interaction events, additional motifs located in their N-terminal and C-terminal regions are required for the recognition of diverse protein partners. The ability of the Id proteins to interact with structurally different proteins is likely to arise from their conformational flexibility: indeed, these proteins contain intrinsically disordered regions that, in the case of the HLH region, undergo folding upon self- or heteroassociation. Besides their crucial role for cell-fate determination and cell-cycle progression during development, other important cellular events have been related to the Id-protein expression in a number of pathologies. Dysregulated Id-protein expression has been associated with tumor growth, vascularization, invasiveness, metastasis, chemoresistance and stemness, as well as with various developmental defects and diseases. Herein we provide an overview on the structural properties, mode of action, biological function and therapeutic potential of these regulatory proteins.
Insights
Inhibitors of DNA binding and cell differentiation (Id) proteins regulate cell development and differentiation. Dysregulated Id protein expression is linked to diseases like cancer, highlighting their therapeutic potential.
Area of Science:
- Molecular Biology
- Cell Biology
- Developmental Biology
Background:
- Inhibitors of DNA binding (Id) proteins are helix-loop-helix (HLH) transcription factors lacking DNA-binding motifs.
- They are crucial regulators of cell-cycle progression and differentiation during development.
- Id proteins interact with diverse partners, including bHLH factors, pocket proteins, and proteasome subunits.
Purpose of the Study:
- To provide an overview of the structural properties, mechanisms of action, biological functions, and therapeutic potential of Id proteins.
Main Methods:
- Literature review and synthesis of existing research on Id proteins.
- Analysis of protein-protein interaction mechanisms involving Id proteins.
- Examination of Id protein roles in development and disease.
Main Results:
- Id proteins utilize their HLH domain and other regions for diverse protein interactions.
- Conformational flexibility and intrinsically disordered regions contribute to Id protein's interaction capabilities.
- Dysregulated Id protein expression is implicated in tumor growth, metastasis, chemoresistance, and developmental diseases.
Conclusions:
- Id proteins are key regulators of cellular processes with significant implications in pathology.
- Understanding Id protein structure-function relationships is crucial for exploring their therapeutic potential in cancer and other diseases.
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