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Reconstrucció per Cryo-EM×Acoblament molecular×Topologia de la Xarxa d'Interaccions Proteïna-Proteïna×
CampBioinformàticaBioinformàticaBioinformàtica
FamíliaProcess / pipelineProcess / pipelineProcess / pipeline
Any d'origen197519822000
Autor originalJoachim FrankIrwin KuntzPeter Uetz
TipusImage reconstruction pipelineBinding prediction pipelineNetwork analysis pipeline
Font seminalFrank, J. (2002). Single-particle imaging of macromolecules by cryo-electron microscopy. Annual Review of Biophysics and Biomolecular Structure, 31, 303-319. DOI ↗Kuntz, I. D., Blaney, J. M., Oatley, S. J., Langridge, R., & Ferrin, T. E. (1982). A geometric approach to macromolecule-ligand interactions. Journal of Molecular Biology, 161(2), 269-288. DOI ↗Uetz, P., Giot, L., Cagney, G., Mansfield, T. A., Judson, R. S., Knight, J. R., ... & Lomax, J. (2000). A comprehensive analysis of protein-protein interactions in Saccharomyces cerevisiae. Nature, 403(6770), 623-627. DOI ↗
Àliescryo-electron microscopy, cryo-EM, single-particle cryo-EMprotein-ligand docking, binding predictionprotein interaction networks, interactome analysis, network topology
Relacionats343
ResumCryo-electron microscopy (cryo-EM) determines three-dimensional macromolecular structures at atomic or near-atomic resolution by imaging proteins frozen in vitreous ice. Pioneered by Frank, Henderson, and others, this technique has revolutionized structural biology by enabling visualization of large, non-crystallizable complexes and capturing functional conformational states.Molecular docking predicts the preferred binding orientation and affinity of a ligand (small molecule) within a protein binding pocket. Pioneered by Kuntz and colleagues in 1982, this computational method searches conformational space to find energetically favorable ligand-protein complexes, enabling rapid screening of chemical libraries for drug discovery.Protein-protein interaction network analysis identifies and characterizes the structural properties of cellular interaction networks. Pioneered by Uetz and colleagues through large-scale yeast two-hybrid screening, this approach reveals topological features like hubs, modules, and motifs that encode functional organization and disease associations.
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ScholarGateCompara mètodes: Cryo-EM Reconstruction · Molecular Docking · PPI Network Topology. Recuperat el 2026-06-19 de https://scholargate.app/ca/compare