Use of phosphotyrosine-containing peptides to target SH2 domains: Antagonist peptides of the Crk/CrkL-p130Cas axis.
Crk-Associated Substrate Protein
/ metabolism
src Homology Domains
Proto-Oncogene Proteins c-crk
/ metabolism
Humans
Phosphotyrosine
/ metabolism
Peptides
/ chemistry
Protein Binding
Adaptor Proteins, Signal Transducing
/ metabolism
Molecular Docking Simulation
/ methods
Nuclear Proteins
/ metabolism
Computational docking
Crk
CrkL
P130Cas
Peptide ligands
Phosphotyrosine
SH2 domains
Journal
Methods in enzymology
ISSN: 1557-7988
Titre abrégé: Methods Enzymol
Pays: United States
ID NLM: 0212271
Informations de publication
Date de publication:
2024
2024
Historique:
medline:
18
6
2024
pubmed:
18
6
2024
entrez:
17
6
2024
Statut:
ppublish
Résumé
Protein-protein interactions between SH2 domains and segments of proteins that include a post-translationally phosphorylated tyrosine residue (pY) underpin numerous signal transduction cascades that allow cells to respond to their environment. Dysregulation of the writing, erasing, and reading of these posttranslational modifications is a hallmark of human disease, notably cancer. Elucidating the precise role of the SH2 domain-containing adaptor proteins Crk and CrkL in tumor cell migration and invasion is challenging because there are no specific and potent antagonists available. Crk and CrkL SH2s interact with a region of the docking protein p130Cas containing 15 potential pY-containing tetrapeptide motifs. This chapter summarizes recent efforts toward peptide antagonists for this Crk/CrkL-p130Cas interaction. We describe our protocol for recombinant expression and purification of Crk and CrkL SH2s for functional assays and our procedure to determine the consensus binding motif from the p130Cas sequence. To develop a more potent antagonist, we employ methods often associated with structure-based drug design. Computational docking using Rosetta FlexPepDock, which accounts for peptides having a greater number of conformational degrees of freedom than small organic molecules that typically constitute libraries, provides quantitative docking metrics to prioritize candidate peptides for experimental testing. A battery of biophysical assays, including fluorescence polarization, differential scanning fluorimetry and saturation transfer difference nuclear magnetic resonance spectroscopy, were employed to assess the candidates. In parallel, GST pulldown competition assays characterized protein-protein binding in vitro. Taken together, our methodology yields peptide antagonists of the Crk/CrkL-p130Cas axis that will be used to validate targets, assess druggability, foster in vitro assay development, and potentially serve as lead compounds for therapeutic intervention.
Identifiants
pubmed: 38886037
pii: S0076-6879(24)00137-X
doi: 10.1016/bs.mie.2024.04.013
pii:
doi:
Substances chimiques
Crk-Associated Substrate Protein
0
Proto-Oncogene Proteins c-crk
0
Phosphotyrosine
21820-51-9
CRKL protein
0
Peptides
0
BCAR1 protein, human
0
Adaptor Proteins, Signal Transducing
0
CRK protein, human
0
Nuclear Proteins
0
Types de publication
Journal Article
Langues
eng
Sous-ensembles de citation
IM
Pagination
301-342Informations de copyright
Copyright © 2024. Published by Elsevier Inc.