Exploring the short linear motif-mediated protein-protein interactions of CrkL through ProP-PD
L Pagano1, L Simonetti2, V Pennacchietti1
1Dipartimento di Scienze Biochimiche "A. Rossi Fanelli", Sapienza Universita di Roma, Laboratory Affiliated to Istituto Pasteur Italia - Fondazione Cenci Bolognetti, 00185, Rome, Italy.
Abstract:
Adaptor proteins play a pivotal role in cellular signaling mediating a multitude of protein-protein interaction critical for cellular homeostasis. Dysregulation of these interactions has been linked to the onset of various cancer pathologies and exploited by viral pathogens during host cell takeover. CrkL is an adaptor protein composed of an N-terminal SH2 domain followed by two SH3 domains that mediate interactions with diverse partners through the recognition of specific binding motifs. In this study, we employed proteomic peptide-phage display (ProP-PD) to comprehensively explore the short linear motif (SLiM)-based interactions of CrkL. Furthermore, we scrutinized how the binding affinity for selected peptides was influenced in the context of the full-length CrkL versus the isolated N-SH3 domain. Importantly, our results provided insights into SLiM-binding sites within previously reported interactors, as well as revealing novel human and viral ligands, expanding our understanding of the interactions mediated by CrkL and highlighting the significance of SLiM-based interactions in mediating adaptor protein function, with implications for cancer and viral pathologies.
Insights
Adaptor proteins like CrkL are crucial for cell signaling. This study used proteomic peptide-phage display to map CrkL
Area of Science:
- Molecular Biology
- Cellular Signaling
- Protein-Protein Interactions
Background:
- Adaptor proteins are vital for cellular homeostasis and signaling.
- CrkL, an adaptor protein, has SH2 and SH3 domains mediating interactions.
- Dysregulated interactions are implicated in cancer and viral infections.
Purpose of the Study:
- To comprehensively explore short linear motif (SLiM)-based interactions of CrkL.
- To investigate how binding affinity is affected in full-length CrkL versus isolated domains.
- To identify novel human and viral ligands of CrkL.
Main Methods:
- Proteomic peptide-phage display (ProP-PD) was employed.
- Binding affinity was analyzed for selected peptides.
- Interactions were studied in the context of full-length CrkL and its isolated N-SH3 domain.
Main Results:
- ProP-PD successfully mapped CrkL's SLiM-based interactions.
- Insights into SLiM-binding sites within known CrkL interactors were gained.
- Novel human and viral ligands for CrkL were identified.
Conclusions:
- CrkL mediates diverse interactions through SLiMs.
- SLiM-based interactions are significant for adaptor protein function.
- Findings have implications for understanding cancer and viral pathologies.
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